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J-GLOBAL ID:200901047383280618   Update date: Apr. 14, 2024

SHINJI HAYASHI

ハヤシ シンジ | SHINJI HAYASHI
Affiliation and department:
Research field  (2): Nanostructure physics ,  Nanostructure chemistry
Research keywords  (2): ナノサイエンス ナノテクノロジー ナノフォトニクス ,  nanoscience nanotechnology nanophotonics
Research theme for competitive and other funds  (33):
  • 2022 - 2025 Peculiar local field responses in Fano-resonant multilayer systems and their applications
  • 2019 - 2022 Photofunctional Near-Field Fano Resonances in Multilayer Systems and Their Applications
  • 2016 - 2019 Realization and application of extremely high-Q Fano resonances in multilayer systems
  • 2011 - 2014 Extremely high fluorescence enhancement in quenching-free nanostructures
  • 2009 - 2010 非金属系ナノ構造による光電場増強機能の創出
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Papers (74):
  • Shinji Hayashi, Hiroshi Sugimoto, Minoru Fujii, Dmitry V. Nesterenko, Zouheir Sekkat. Formation of Fano line shapes in optical responses and spectra of internal fields of excitonic nanospheres. Physical Review B. 2023. 108. 12
  • Shinji Hayashi, Kengo Motokura, Minoru Fujii, Dmitry V. Nesterenko, Zouheir Sekkat. Nested formation mechanisms of Fano line shape in far-field response of coupled waveguide multilayer structure revealed by analyses of local electric fields. Journal of Applied Physics. 2022
  • Kengo Motokura, Minoru Fujii, Dmitry V. Nesterenko, Zouheir Sekkat, Shinji Hayashi. Coupling of Planar Waveguide Modes in All-Dielectric Multilayer Structures: Monitoring the Dependence of Local Electric Fields on the Coupling Strength. Physical Review Applied. 2021
  • Byungjun Kang, Kengo Motokura, Minoru Fujii, Dmitry V. Nesterenko, Zouheir Sekkat, Shinji Hayashi. Observation of Fano line shape in directional fluorescence emission mediated by coupled planar waveguide modes and interpretation based on Lorentz reciprocity. AIP Advances. 2020. 10. 7. 075302-075302
  • Kengo Motokura, Byungjun Kang, Minoru Fujii, Dmitry V. Nesterenko, Zouheir Sekkat, Shinji Hayashi. Wide-range line shape control of Fano-like resonances in all-dielectric multilayer structures based on enhanced light absorption in photochromic waveguide layers. Journal of Applied Physics. 2020
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MISC (304):
Professional career (3):
  • 固体物理学博士(パリ大学)
  • 工学修士(京都工芸繊維大学)
  • 工学博士(大阪大学)
Awards (1):
  • 2007 - 井上文化賞(科学技術部門)
Association Membership(s) (4):
ナノ学会 ,  電子情報通信学会 ,  応用物理学会 ,  物理学会
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