Invited Speakers

[+] All Open

Symposium

Agnes Tixier-Mita (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Akira Kagoshima (Hitachi High-Tech Corporation) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Akira Ohtomo (Tokyo Inst. of Tech.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Akira Yamada (Tokyo Inst. of Tech.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Atsushi Sugita (Shizuoka Univ.) T22 Control and device application of spontaneous orientation of polar molecules
Atsushi Wada (Toshiba Corporation) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Ayaka Kanai (Nagaoka Univ. of Tech.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Daichi Chiba (Osaka Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Daisuke Nakamura (Kyushu Univ.) T6 Recent Progress of laser ablation
Dong Wook Kim (Aromajoin Corporation) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Dongsheng Yuan (NIMS) T3 Various materials for radiation measurements
Eisuke Abe (RIKEN) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Eisuke Tokumitsu (Japan Advanced Inst. of Sci. and Tech.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Emi Narita (QST) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Erika Kawakami (RIKEN) T29 Latest trend of device technologies for quantum computing
Hideharu Amano (Keio Univ.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Hidekazu Tanaka (Osaka Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Hideki Fujiwara (Hokkai-Gakuen Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Hideo Fujikake (Tohoku Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hideo Kosaka (Yokohama Nat'l Univ.) T29 Latest trend of device technologies for quantum computing
Hideo Ohkita (Kyoto Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Hideto Hidaka (Renesas Electronics Corporation) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Hideyoshi Horimai (HOLOMEDIA/The Univ. of Tokyo) NT2 Got Talent in Japan -KOSEN & JSAP-
Hideyuki Maki (Keio Univ.) T28 Recent progresses of device applications of low-dimensional materials
Hirokazu Masai (AIST) T3 Various materials for radiation measurements
Hirokazu Tahara (Kyoto Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Hiroki Moriwake (Japan Fine Ceramics Center) T11 Machine learning on dielectrics study
Hironori Kobayashi (AIST) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Hiroshi Masuko (Azabu High School) T1 Vocational career education and lifelong learning for realizing skill and technology inheritance
Hiroshi Miyajima (Sumitomo Precision Products CO.,LTD.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Hiroshi Mukawa (Sony Group Corporation) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hiroshi Sugimoto (Kobe Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Hiroshi Takatsu (Kyoto Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Hiroshi Toshiyoshi (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Hiroshi Yoshikawa (Nihon Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hirotaka Terai (NICT) T29 Latest trend of device technologies for quantum computing
Hirotomo Nishihara (Tohoku Univ.) T28 Recent progresses of device applications of low-dimensional materials
Hirotsugu Yamamoto (Utsunomiya Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hiroyuki Araki (SCREEN Semiconductor Solutions Co., Ltd.) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Hiroyuki Fujita (Tokyo City Univ.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Hiroyuki Matsuzaki (The Univ. of Tokyo) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Hiroyuki Shinoda (The Univ. of Tokyo) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hiroyuki Yoshida (Chiba Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Hisao Ishii (Chiba Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Hitoshi Kunitake (Semiconductor Energy Laboratory Co., Ltd.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Hitoshi Saito (FUJITSU SEMICONDUCTOR MEMORY SOLUTION LIMITED) T28 Recent progresses of device applications of low-dimensional materials
Homei Miyashita (Meiji Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Itaru Osaka (Hiroshima Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Jaw-Shen Tsai (Tokyo Univ. of Sci.) T29 Latest trend of device technologies for quantum computing
Jiro Matsuo (Kyoto Univ.) T15 Latest trends in ion beam analysis
Jun Yoneda (Tokyo Inst. of Tech.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Junichi Takahara (Osaka Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Karl Leo (Technische Universitat Dresden) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Kasidit Toprasertpong (The Univ. of Tokyo) T11 Machine learning on dielectrics study
Katsuhiro Muramatsu (Konoshima Chemical Co.,Ltd. ) T3 Various materials for radiation measurements
Katsuya Shimizu (Osaka Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Kazuaki Sawada (Toyohashi Univ. of Tech.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Kazuhiko Matsumoto (Osaka Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Kazunari Ishimaru (Kioxia Corporation) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Kazuo Tanaka (Kyoto Univ.) T3 Various materials for radiation measurements
Kazuya Masu (Tokyo Inst. of Tech.) NT2 Got Talent in Japan -KOSEN & JSAP-
Kazuyoshi Ueno (Shibaura Inst. of Tech.) T24 Connection : From BEOL to Tiplet, and to the Future
Kazuyuki Kuroyama (The Univ. of Tokyo) T17 Quantum Cooperation between Materials and Information
Keigo Arai (Tokyo Inst. of Tech.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Keiichi Nagasaka (Tokyo Electron Limited) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Keisuke Ide (Tokyo Inst. of Tech.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Keita Sakai (CANON INC.) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Keitaro Tanoi (The Univ. of Tokyo) T3 Various materials for radiation measurements
Kenichi Yamamoto (Hokkaido Univ.) T1 Vocational career education and lifelong learning for realizing skill and technology inheritance
Kenji Ohmori (Inst. for Molecular Sci.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Kenji Setoura (Kobe City College of Tech.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Kensuke Kobayashi (The Univ. of Tokyo) T17 Quantum Cooperation between Materials and Information
Kentaro Iwami (Tokyo Univ. of Agri. and Tech.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Kentaro Kinoshita (Tokyo Univ. of Sci.) T11 Machine learning on dielectrics study
Kiyofumi Katagiri (Hiroshima Univ.) T3 Various materials for radiation measurements
Kiyoshi Watanabe (Semiconductor Equipment Association of Japan) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Kohei Ohnishi (Kyushu Univ.) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Koichi Takahashi (RIKEN) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Koji Asakawa (Kioxia Corporation) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Koji Kimoto (NIMS) T2 Materials with Hyperordered Structures and their Applications
Kosuke Urushihara (CANON INC.) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Kotaro Obata (RIKEN) T6 Recent Progress of laser ablation
Kouki Sato (Muroran Inst. of Tech.) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Kyoko Namura (Kyoto Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Maki Honda (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Makoto Konagai (Tokyo City Univ.) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Mamoru Tamura (Osaka Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Masaharu Shiratani (Kyushu Univ.) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Masahiko Inami (The Univ. of Tokyo) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Masahiko Ishino (QST) T6 Recent Progress of laser ablation
Masahiko Kimura ( Murata Manufacturing Co., Ltd.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Masahiro Aoyagi (Kumamoto Univ.) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Masahiro Hiramoto (Inst. for Molecular Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Masahisa Fujino (AIST) T24 Connection : From BEOL to Tiplet, and to the Future
Masakazu Nakamura (Nara Inst. of Sci. and Tech.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Masakazu Oikawa (QST) T15 Latest trends in ion beam analysis
Masaki Hashida (Tokai Univ.) T6 Recent Progress of laser ablation
Masaki Tanaka (Tokyo Univ. of Agri. and Tech.) T22 Control and device application of spontaneous orientation of polar molecules
Masamichi Sakagami (Tamagawa Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Masanobu Iwanaga (NIMS) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Masaru Hori (Nagoya Univ.) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Masaru Kato (Osaka Metropolitan Univ.) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Masashi Miyata (NTT) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Masateru Taniguchi (Osaka Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Megumi Taoka (GLOBIS Univ. MBA Program) NT5 Diversity & Inclusion with Various Distinct Perspectives
Mikihiko Oogane (Tohoku Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Mikihiro Yokozeki (Sony Semiconductor Solutions Corporation) NT2 Got Talent in Japan -KOSEN & JSAP-
Mikio Iwamura (NTT QONOQ, INC.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Minoru Sakamoto (Nat'l Museum of Japanese History) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Motoaki Bamba (Kyoto Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Mutsuko Hatano (Tokyo Inst. of Tech.) NT5 Diversity & Inclusion with Various Distinct Perspectives
Mutsumi Kimura (Ryukoku Univ.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Naoki Matsushima (Avatar Robot Cafe) NT5 Diversity & Inclusion with Various Distinct Perspectives
Naoki Ogawa (RIKEN) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Naoya Morioka (Kyoto Univ.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Natsuko Fujita (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Nazanin Bassiri-Gharb (Georgia Inst. of Tech.) T11 Machine learning on dielectrics study
Nobu Kuzuu (Fukui Univ.) T1 Vocational career education and lifelong learning for realizing skill and technology inheritance
Norikazu Kinoshita (Shimizu Co.) T15 Latest trends in ion beam analysis
Norikazu Mizuochi (Kyoto Univ.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Noriko Chikumoto (Chubu Univ.) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Norio Terada (Kagoshima Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Pohling Then (SCREEN Semiconductor Solutions Co., Ltd.) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Renshi Sawada (Palmens Co. Ltd.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Ryo Matsumoto (NIMS) NT2 Got Talent in Japan -KOSEN & JSAP-
Ryo Okamoto (Kyoto Univ.) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Ryota Kabe (OIST) T3 Various materials for radiation measurements
Ryota Shimizu (Tokyo Inst. of Tech.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Ryuichi Matsuki (Shinko Electric Industries Co., Ltd. ) T24 Connection : From BEOL to Tiplet, and to the Future
Sachiko Yoshihashi (Nagoya Univ.) NT2 Got Talent in Japan -KOSEN & JSAP-
Satoshi Hamaguchi (Osaka Univ.) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Satoshi Iihama (Tohoku Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Satoshi Ishii (NIMS) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Satoshi Itoh (NEDO) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Satoshi Kurihara (Keio Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Seigo Tarucha (RIKEN) T29 Latest trend of device technologies for quantum computing
Seiichi Takamatsu (The Univ. of Tokyo) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Seiichiro Izawa (Inst. for Molecular Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Shigeo Yoshida (Tokai Univ.) T1 Vocational career education and lifelong learning for realizing skill and technology inheritance
Shigeru Niki (NEDO) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Shigetaka Tomiya (Sony Semiconductor Solutions Corporation) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Shiho Tokonami (Osaka Metropolitan Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Shin Yabukami (Tohoku Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Shin-ichi Orimo (Tohoku Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Shinichi Ouchi (AIST) T24 Connection : From BEOL to Tiplet, and to the Future
Shinichiro Iwai (Tohoku Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Shinnosuke Iwaki (Virtual Cast Inc.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Shinpei Ogawa (Mitsubishi Electric Corporation) T28 Recent progresses of device applications of low-dimensional materials
Shiro Kawabata (AIST) T17 Quantum Cooperation between Materials and Information
Shoko Utsunomiya (Amazon Web Services Japan G.K.) T17 Quantum Cooperation between Materials and Information
Shouta Ushiba ( Murata Manufacturing Co., Ltd.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Shuji Ikeda (tei solutions) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Shun Muroga (AIST) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Shunsuke Murai (Kyoto Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Shunsuke Sato (Univ. of Tsukuba) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Shuntaro Tani (The Univ. of Tokyo) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Stefan Facsko (Helmholtz-Zentrum Dresden-Rossendorf) T15 Latest trends in ion beam analysis
Taichi Goto (Tohoku Univ.) NT2 Got Talent in Japan -KOSEN & JSAP-
Takaaki Suzuki (Gunma Univ.) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Takaaki Yano (Tokushima Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Takafumi Fukushima (Tohoku Univ.) T24 Connection : From BEOL to Tiplet, and to the Future
Takafumi Kojima (Nat'l Astronomical Observatory of Japan) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Takahiko Takewaki (Mitsubishi Chemical Corporation) T2 Materials with Hyperordered Structures and their Applications
Takahiro Kikuchi (AIST) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Takao Aoki (Waseda Univ.) T17 Quantum Cooperation between Materials and Information
Takao Aoki (Waseda Univ.) T29 Latest trend of device technologies for quantum computing
Takashi Mori (RIKEN) T17 Quantum Cooperation between Materials and Information
Takayuki Iwasaki (Tokyo Inst. of Tech.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Takayuki Negami (Ritsumeikan Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Takeaki Yajima (Kyushu Univ.) T11 Machine learning on dielectrics study
Takehiro Kumakura (HORIBA STEC, Co., Ltd.) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Takenobu Taishi (Nagoya Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Takeo Watanabe (Univ. of Hyogo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Takeshi Fujiwara (AIST) T3 Various materials for radiation measurements
Takeshi Ohshima (QST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Takumi Sannomiya (Tokyo Inst. of Tech.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Takuro Ideguchi (The Univ. of Tokyo) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Takuya Hoshina (Tokyo Inst. of Tech.) T11 Machine learning on dielectrics study
Taro Hitosugi (The Univ. of Tokyo) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Taro Wakamura (NTT) T19 Emergence of novel superconducting device by spaciotemporal manipulation
Tatsuhiko Higashiki (KIOXIA Holdings Corporation) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Tatsuro Goda (Toyo Univ.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Teruo Kanki (Osaka Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Tetsuo Sakka (Kyoto Univ.) T6 Recent Progress of laser ablation
Tetsuo Tsuneishi (Tokyo Electron Device Limited) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Tetsuro Tsuji (Kyoto Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Tetsuya Aramoto (Idemitsu Kosan Co., Ltd.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Tetsuya Hama (The Univ. of Tokyo) T22 Control and device application of spontaneous orientation of polar molecules
Tetsuya Kogita (Toray Research Center, Inc.) T15 Latest trends in ion beam analysis
Tetsuya Tatsumi (Sony Semiconductor Solutions Corporation) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Tomohiro Nozaki (Tokyo Inst. of Tech.) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Tomohito Otobe (QST) T6 Recent Progress of laser ablation
Tomoko Yoshida (Osaka Metropolitan Univ.) T16 What is Plasma-Driven Science - Expectations for New Developments in Plasma Processes
Tomoya Asaba (Kyoto Univ.) T17 Quantum Cooperation between Materials and Information
Toshiharu Saiki (Keio Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Toshihide Kobayashi (Sangyo Times, Inc.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Toshihide Nabatame (NIMS) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Toshihiro Okamoto (The Univ. of Tokyo) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Toshikazu Hashimoto (NTT) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Toshio Kawahara (Chubu Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Toshiro Hiramoto (The Univ. of Tokyo) NT1 How can Applied Physics accelerate the green transformation for the sustainable future?
Toshiro Hiramoto (The Univ. of Tokyo) NT4 Human resource development and industry-academia collaboration to drive the semiconductor industry in the future
Tsuyoshi Miyazaki (NIMS) T2 Materials with Hyperordered Structures and their Applications
Wen-Hsin Chang (AIST) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Yasufumi Fujiwara (Osaka Univ.) T2 Materials with Hyperordered Structures and their Applications
Yasuhiro Morikawa (ULVAC, Inc.) T24 Connection : From BEOL to Tiplet, and to the Future
Yasuhiro Katsumata (JST) T28 Recent progresses of device applications of low-dimensional materials
Yasuo Nakayama (Tokyo Univ. of Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Yasuto Miyake (RIKEN) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Yasutomo Ota (Keio Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Yohei Onodera (Kyoto Univ.) T2 Materials with Hyperordered Structures and their Applications
Yohei Watanabe (Kyoto Prefectural Univ. of Med.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Yohio Mita (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Yoichi Motoori (Murata Machinery, Ltd.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Yoshiaki Adachi (Kanazawa Inst. of Tech.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Yoshihiko Horio (Tohoku Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Yoshihiro Hayashi (Keio Univ.) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Yoshihisa Kagawa (Sony Semiconductor Solutions Corporation) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Yoshitaro Nose (Kyoto Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Yoshiyuki Miyamoto (AIST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Yosuke Ito (Kyoto Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Yuichi Kozawa (Tohoku Univ.) T6 Recent Progress of laser ablation
Yuichi Yamazaki (QST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Yukari Katsura (NIMS) NT5 Diversity & Inclusion with Various Distinct Perspectives
Yuki Ashiba (AIST) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Yukiko Kamikawa (AIST) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Yukio Kawano (Chuo Univ.) T28 Recent progresses of device applications of low-dimensional materials
Yunosuke Sakai (KOKUSAI ELECTRIC CORPORATION) NT3 World Stops When Japan Stops! ~ Our Legendary Semiconductor Technologies ~
Yutaka Noguchi (Meiji Univ.) T22 Control and device application of spontaneous orientation of polar molecules
Yuya Tanaka (Gunma Univ.) T22 Control and device application of spontaneous orientation of polar molecules

Forcused Session "AI Electronics"

1.Interdisciplinary Physics and Related Areas of Science and Technology

2.Ionizing Radiation

Akito Watanabe (Tohoku Univ.) 2.5 Radiation-induced phosphors
Dongsheng Yuan (NIMS) T3 Various materials for radiation measurements
Hirokazu Masai (AIST) 2.5 Radiation-induced phosphors
Hirokazu Masai (AIST) T3 Various materials for radiation measurements
Hiroyuki Matsuzaki (The Univ. of Tokyo) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Jiro Matsuo (Kyoto Univ.) T15 Latest trends in ion beam analysis
Katsuhiro Muramatsu (Konoshima Chemical Co.,Ltd. ) T3 Various materials for radiation measurements
Kazuo Tanaka (Kyoto Univ.) T3 Various materials for radiation measurements
Keitaro Tanoi (The Univ. of Tokyo) T3 Various materials for radiation measurements
Kenji Shimazoe (The Univ. of Tokyo) 2.2 Radiation physics fundamentals & applications, radiation generators, new technology
Kiyofumi Katagiri (Hiroshima Univ.) T3 Various materials for radiation measurements
Koji Kimoto (NIMS) T2 Materials with Hyperordered Structures and their Applications
Maki Honda (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Masakazu Oikawa (QST) T15 Latest trends in ion beam analysis
Minoru Sakamoto (Nat'l Museum of Japanese History) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Natsuko Fujita (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Norikazu Kinoshita (Shimizu Co.) T15 Latest trends in ion beam analysis
Ryota Kabe (OIST) T3 Various materials for radiation measurements
Stefan Facsko (Helmholtz-Zentrum Dresden-Rossendorf) T15 Latest trends in ion beam analysis
Takahiko Takewaki (Mitsubishi Chemical Corporation) T2 Materials with Hyperordered Structures and their Applications
Takeshi Fujiwara (AIST) T3 Various materials for radiation measurements
Tetsuo Iguchi (Nagoya Univ.) 2.2 Radiation physics fundamentals & applications, radiation generators, new technology
Tetsuya Kogita (Toray Research Center, Inc.) T15 Latest trends in ion beam analysis
Toru Aoki (Shizuoka Univ.) 2.2 Radiation physics fundamentals & applications, radiation generators, new technology
Tsuyoshi Miyazaki (NIMS) T2 Materials with Hyperordered Structures and their Applications
Yasufumi Fujiwara (Osaka Univ.) T2 Materials with Hyperordered Structures and their Applications
Yasuto Miyake (RIKEN) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Yohei Onodera (Kyoto Univ.) T2 Materials with Hyperordered Structures and their Applications
Yutaka Fujimoto (Tohoku Univ.) 2.5 Radiation-induced phosphors

3.Optics and Photonics

Ayumu Ishijima (Hokkaido Univ.) 3.3 Biomedical optics
Daisuke Nakamura (Kyushu Univ.) T6 Recent Progress of laser ablation
Dong Wook Kim (Aromajoin Corporation) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Enhao Li (The Graduate Univ. for Advanced Studies, SOKENDAI) 3.4 Laser system and materials
Hideki Fujiwara (Hokkai-Gakuen Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Hideo Fujikake (Tohoku Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hirokazu Tahara (Kyoto Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Hiroshi Mukawa (Sony Group Corporation) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hiroshi Sugimoto (Kobe Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Hiroshi Yoshikawa (Nihon Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hirotsugu Yamamoto (Utsunomiya Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Hiroyuki Shinoda (The Univ. of Tokyo) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Homei Miyashita (Meiji Univ.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Jianying Hao (The Univ. of Tokyo/ Fujian Normal Univ.) 3.2 Information photonics and image engineering
Junichi Takahara (Osaka Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Kazuo Kuroda (Utsunomiya Univ./The Univ. of Tokyo) 3.1 Basic optics and frontier of optics
Kazuue Fujita (Hamamatsu Photonics K.K.) 3.12 Semiconductor optical devices
Kenji Ohmori (Inst. for Molecular Sci.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Kenji Setoura (Kobe City College of Tech.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Kentaro Iwami (Tokyo Univ. of Agri. and Tech.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Korenobu Matsuzaki (RIKEN) 3.9 Optical quantum physics and technologies
Kotaro Obata (RIKEN) T6 Recent Progress of laser ablation
Kyoko Namura (Kyoto Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Mamoru Tamura (Osaka Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Masahiko Inami (The Univ. of Tokyo) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Masahiko Ishino (QST) T6 Recent Progress of laser ablation
Masaki Hashida (Tokai Univ.) T6 Recent Progress of laser ablation
Masanobu Iwanaga (NIMS) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Masashi Miyata (NTT) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Mikio Iwamura (NTT QONOQ, INC.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Motoaki Bamba (Kyoto Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Naoki Ogawa (RIKEN) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Ryosuke Sato (Waseda Univ.) 3.13 Optical control devices and optical fibers
Satoshi Iihama (Tohoku Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Satoshi Ishii (NIMS) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Shiho Tokonami (Osaka Metropolitan Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Shinichiro Iwai (Tohoku Univ.) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Shinnosuke Iwaki (Virtual Cast Inc.) T8 Applied Physics Accelerating the Metaverse - Towards Multimodality in AR/VR-
Shubhra S. Pasayat (Univ. of Wisconsin-Madison) 3.12 Semiconductor optical devices
Shun Yajima (Tokyo Inst. of Tech.) 3.13 Optical control devices and optical fibers
Shunsuke Murai (Kyoto Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Shunsuke Sato (Univ. of Tsukuba) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Shuntaro Tani (The Univ. of Tokyo) T5 Sciences of Strong Light-Matter Interaction for Tailored Quantum Manipulation
Taichiro Fukui (The Univ. of Tokyo) 3.14 Silicon photonics and integrated photonics
Takaaki Yano (Tokushima Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Takeshi Shimano (Hitachi, Ltd.) 3.2 Information photonics and image engineering
Takumi Sannomiya (Tokyo Inst. of Tech.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Takuro Ideguchi (The Univ. of Tokyo) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Takuya Okamoto (NTT) 3.5 Ultrashort-pulse and high-intensity lasers
Tatsuo Uchida (Tohoku Univ.) 3.2 Information photonics and image engineering
Tetsuo Sakka (Kyoto Univ.) T6 Recent Progress of laser ablation
Tetsuro Tsuji (Kyoto Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Tomohito Otobe (QST) T6 Recent Progress of laser ablation
Toshiharu Saiki (Keio Univ.) T7 New horizon in interdisciplinary photonics pioneered by nano-photothermal conversion
Yasutomo Ota (Keio Univ.) T9 Mietronics -Physics and applications of Dielectric Mie Resonators
Ying Huang (Tohoku Univ.) 3.11 Nanoscale optical science and near-field optics (formerly 3.12)
Yu-Chieh Lin (RIKEN) 3.5 Ultrashort-pulse and high-intensity lasers
Yuichi Kozawa (Tohoku Univ.) T6 Recent Progress of laser ablation

6.Thin Films and Surfaces

Agnes Tixier-Mita (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Akira Ohtomo (Tokyo Inst. of Tech.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Ariando Ariando (Nat'l Univ. of Singapore) 6.1 Ferroelectric thin films
Eisuke Abe (RIKEN) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Hidekazu Tanaka (Osaka Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Hiroki Moriwake (Japan Fine Ceramics Center) T11 Machine learning on dielectrics study
Hiroshi Takatsu (Kyoto Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Hiroshi Toshiyoshi (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Hiroyasu Yamahara (The Univ. of Tokyo) 6.4 Thin films and New materials
Jun Yoneda (Tokyo Inst. of Tech.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Kaifeng Zhang (Hitachi, Ltd.) 6.6 Probe Microscopy
Kasidit Toprasertpong (The Univ. of Tokyo) T11 Machine learning on dielectrics study
Katsuya Shimizu (Osaka Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Keita Sakai (CANON INC.) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Kentaro Kinoshita (Tokyo Univ. of Sci.) T11 Machine learning on dielectrics study
Kento Narita (Waseda Univ.) 6.2 Ferroelectric thin films
Koji Asakawa (Kioxia Corporation) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Masaki Ninomiya (Osaka Univ.) 6.3 Oxide electronics
Masamichi Sakagami (Tamagawa Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Naoto Hasegawa (Tohoku Univ.) 6.3 Oxide electronics
Naoya Morioka (Kyoto Univ.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Nazanin Bassiri-Gharb (Georgia Inst. of Tech.) T11 Machine learning on dielectrics study
Norikazu Mizuochi (Kyoto Univ.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Ryota Shimizu (Tokyo Inst. of Tech.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Satoshi Kurihara (Keio Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Shin-ichi Orimo (Tohoku Univ.) T10 Frontiers on research of hydrate materials -Current status, subjects, and prospects of materials development and their functionalities
Takaaki Suzuki (Gunma Univ.) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Takayuki Iwasaki (Tokyo Inst. of Tech.) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Takeaki Yajima (Kyushu Univ.) T11 Machine learning on dielectrics study
Takeo Watanabe (Univ. of Hyogo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Takeshi Ohshima (QST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Takuya Hoshina (Tokyo Inst. of Tech.) T11 Machine learning on dielectrics study
Teruo Kanki (Osaka Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Wen-Hsin Chang (AIST) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Yohio Mita (The Univ. of Tokyo) T12 Advanced Surface and Interface Technologies for Micro and Nanoscale Fabrication
Yoshihiko Horio (Tohoku Univ.) T14 Frontiers of information processing and generation in brains and inanimate autonomous distributed systems
Yoshiyuki Miyamoto (AIST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials
Yuichi Yamazaki (QST) T13 The leading-edge research on quantum science and technology based on quantum bits and spin defects in solid-state materials

7.Beam Technology and Nanofabrication

Hiroyuki Matsuzaki (The Univ. of Tokyo) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Jiro Matsuo (Kyoto Univ.) T15 Latest trends in ion beam analysis
Maki Honda (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Masakazu Oikawa (QST) T15 Latest trends in ion beam analysis
Masaya Yamamoto (Shizuoka Univ.) 7.2 Applications and technologies of electron beams
Minoru Sakamoto (Nat'l Museum of Japanese History) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Natsuko Fujita (Japan Atomic Energy Agency) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step
Norikazu Kinoshita (Shimizu Co.) T15 Latest trends in ion beam analysis
Stefan Facsko (Helmholtz-Zentrum Dresden-Rossendorf) T15 Latest trends in ion beam analysis
Tetsuya Kogita (Toray Research Center, Inc.) T15 Latest trends in ion beam analysis
Yasuto Miyake (RIKEN) T4 Current status of Accelerator Mass Spectrometry in Japan and the next step

8.Plasma Electronics

9.Applied Materials Science

10.Spintronics and Magnetics

Daichi Chiba (Osaka Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Ju-Young Yoon (Tohoku Univ.) 10.2 Fundamental and exploratory device technologies for spin
Keigo Arai (Tokyo Inst. of Tech.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Mikihiko Oogane (Tohoku Univ.) 10.1 Emerging materials in spintronics and magnetics (including fabrication and characterization methodologies)
Mikihiko Oogane (Tohoku Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Shin Yabukami (Tohoku Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Shinji Yuasa (AIST) 10.3 Spin devices, magnetic memories and storages
Takanori Shirokura (Tokyo Inst. of Tech.) 10.4 Spintronics in semiconductor, topological material, superconductor, and multiferroics
Takuya Kawada (The Univ. of Tokyo) 10.2 Fundamental and exploratory device technologies for spin
Yoshiaki Adachi (Kanazawa Inst. of Tech.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics
Yosuke Ito (Kyoto Univ.) T18 Progress of the feeble biological signal measurement technique by spintronics and magnetics

11.Superconductivity

12.Organic Molecules and Bioelectronics

Aoba Onishi (Tohoku Univ.) 12.7 Biomedical Engineering and Biochips
Atsushi Sugita (Shizuoka Univ.) T22 Control and device application of spontaneous orientation of polar molecules
Hideo Ohkita (Kyoto Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Hiroyuki Yoshida (Chiba Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Hisao Ishii (Chiba Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Itaru Osaka (Hiroshima Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Karl Leo (Technische Universitat Dresden) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Kazuaki Sawada (Toyohashi Univ. of Tech.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Kazuhiko Matsumoto (Osaka Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Masahiko Kimura ( Murata Manufacturing Co., Ltd.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Masahiro Hiramoto (Inst. for Molecular Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Masakazu Nakamura (Nara Inst. of Sci. and Tech.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Masaki Tanaka (Tokyo Univ. of Agri. and Tech.) T22 Control and device application of spontaneous orientation of polar molecules
Masateru Taniguchi (Osaka Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Rei Shimono (Osaka Univ.) 12.5 Organic and hybrid solar cells
Seiichiro Izawa (Inst. for Molecular Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Shouhei Horike (Kobe Univ.) 12.3 Functional Materials and Novel Devices
Shouta Ushiba ( Murata Manufacturing Co., Ltd.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Takenobu Taishi (Nagoya Univ.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Tatsuki Sasaki (Yamagata Univ.) 12.4 Organic light-emitting devices and organic transistors
Tetsuya Hama (The Univ. of Tokyo) T22 Control and device application of spontaneous orientation of polar molecules
Toshihiro Okamoto (The Univ. of Tokyo) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Toshio Kawahara (Chubu Univ.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Tsutomu Miyasaka (Toin Univ. of Yokohama) 12.5 Organic and hybrid solar cells
Yasuo Nakayama (Tokyo Univ. of Sci.) T21 Organic Semiconductor Devices: Present, Past, and Future: Focusing on Photovoltaic Conversion
Yohei Watanabe (Kyoto Prefectural Univ. of Med.) T20 Cutting edge nanotechnology for virus detection -Realization of a pandemic-free society with graphene FET sensors capable of rapid detection of human infectious viruses-
Yui Matsushita (Toyohashi Univ. of Tech.) 12.6 Nanobiotechnology
Yutaka Noguchi (Meiji Univ.) T22 Control and device application of spontaneous orientation of polar molecules
Yuya Tanaka (Gunma Univ.) T22 Control and device application of spontaneous orientation of polar molecules

13.Semiconductors

Akiko Hirata (Sony Semiconductor Solutions Corporation) 13.5 Semiconductor devices/ Interconnect/ Integration technologies
Akira Yamada (Tokyo Inst. of Tech.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Atsushi Wada (Toshiba Corporation) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Ayaka Kanai (Nagaoka Univ. of Tech.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Eisuke Tokumitsu (Japan Advanced Inst. of Sci. and Tech.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Hajime Tanaka (Osaka Univ.) 13.7 Compound and power devices, process technology and characterization
Haruki Fujii (Kyoto Univ.) 13.7 Compound and power devices, process technology and characterization
Hideharu Amano (Keio Univ.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Hiroshi Miyajima (Sumitomo Precision Products CO.,LTD.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Hiroyuki Fujita (Tokyo City Univ.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Hitoshi Kunitake (Semiconductor Energy Laboratory Co., Ltd.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Jun Yoneda (Tokyo Inst. of Tech.) 13.5 Semiconductor devices/ Interconnect/ Integration technologies
Kazuhiko Endo (Tohoku Univ.) 13.5 Semiconductor devices/ Interconnect/ Integration technologies
Kazuyoshi Ueno (Shibaura Inst. of Tech.) T24 Connection : From BEOL to Tiplet, and to the Future
Kei Sumita (The Univ. of Tokyo) 13.5 Semiconductor devices/ Interconnect/ Integration technologies
Keiichi Nagasaka (Tokyo Electron Limited) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Keisuke Ide (Tokyo Inst. of Tech.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Koichi Takahashi (RIKEN) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Masahisa Fujino (AIST) T24 Connection : From BEOL to Tiplet, and to the Future
Masatake Tsuji (Tokyo Inst. of Tech.) 13.2 Exploratory Materials, Physical Properties, Devices
Masaya Hamada (Tokyo Inst. of Tech.) 13.5 Semiconductor devices/ Interconnect/ Integration technologies
Mutsumi Kimura (Ryukoku Univ.) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Norio Terada (Kagoshima Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Renshi Sawada (Palmens Co. Ltd.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Ryuichi Matsuki (Shinko Electric Industries Co., Ltd. ) T24 Connection : From BEOL to Tiplet, and to the Future
Seiichi Takamatsu (The Univ. of Tokyo) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Shigeru Niki (NEDO) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Shinichi Ouchi (AIST) T24 Connection : From BEOL to Tiplet, and to the Future
Shinji Migita (AIST) 13.3 Insulator technology
Shuji Ikeda (tei solutions) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Taiga Kunimoto (Hokkaido Univ.) 13.6 Nanostructures, quantum phenomena, and nano quantum devices
Takafumi Fukushima (Tohoku Univ.) T24 Connection : From BEOL to Tiplet, and to the Future
Takayuki Negami (Ritsumeikan Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Taro Hitosugi (The Univ. of Tokyo) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Tatsuro Goda (Toyo Univ.) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Tetsuya Aramoto (Idemitsu Kosan Co., Ltd.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Toshihide Kobayashi (Sangyo Times, Inc.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Toshihide Nabatame (NIMS) T26 What is next killer application after display? Leading edge technology of oxide semicondutor
Toshikazu Hashimoto (NTT) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Yasuhiro Morikawa (ULVAC, Inc.) T24 Connection : From BEOL to Tiplet, and to the Future
Yoichi Motoori (Murata Machinery, Ltd.) T25 Ultimate Laboratory Automation: Semiconductor Giga Fab as a Giant Robotic Experimenter?
Yoshitaro Nose (Kyoto Univ.) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Yuki Ashiba (AIST) T27 Trends and Prospects of MEMS and Microfabrication Technologies Contributing to the With-Covid-19 Era
Yukiko Kamikawa (AIST) T23 Research and Development Trends in Polycrystalline Thin-Film Solar Cells
Yusuke Kumazaki (Fujitsu Limited) 13.7 Compound and power devices, process technology and characterization

15.Crystal Engineering

Daisuke Iida (King Abdullah Univ. of Sci. and Tech.) 15.4 III-V-group nitride crystals
Haruhiko Koizumi (Hiroshima Univ.) 15.1 Bulk crystal growth
Maki Kushimoto (Nagoya Univ.) 15.4 III-V-group nitride crystals
Mihoko Maruyama (Osaka Univ.) 15.7 Crystal characterization, impurities and crystal defects
Norihiro Hoshino (CRIEPI) 15.6 Group IV Compound Semiconductors (SiC)
Shigeru Horii (Kyoto Univ. of Advanced Sci.) 15.1 Bulk crystal growth
Shuhei Ichikawa (Osaka Univ.) 15.4 III-V-group nitride crystals
Shunya Tanaka (Meijo Univ.) 15.4 III-V-group nitride crystals
Takayuki Nakano (Shizuoka Univ.) 15.4 III-V-group nitride crystals
Takeshi Nishida (Univ. of Tsukuba) 15.3 III-V-group epitaxial crystals, Fundamentals of epitaxy
Yoshinobu Matsuda (Kyoto Univ.) 15.4 III-V-group nitride crystals
Yusuke Mori (Osaka Univ.) 15.4 III-V-group nitride crystals
Yuto Uematsu (Osaka Univ.) 15.5 Group IV crystals and alloys

17.Nanocarbon Technology

Joint Session K "Wide bandgap oxide semiconductor materials and devices"

KuanJu Zhou (Nat'l Sun Yat-Sen Univ.) 21.1 Joint Session K "Wide bandgap oxide semiconductor materials and devices"
Riena Jinno (The Univ. of Tokyo) 21.1 Joint Session K "Wide bandgap oxide semiconductor materials and devices"
Takanori Takahashi (Nara Inst. of Sci. and Tech.) 21.1 Joint Session K "Wide bandgap oxide semiconductor materials and devices"

Joint Session M "Phonon Engineering"

Bin Xu (The Univ. of Tokyo) 22.1 Joint Session M "Phonon Engineering"