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Kishin Matsumori

Showing results (1-10 of 5) with videos related to

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Optics Letters|June 16, 2018
Broadband light absorption of an Al semishell-MIM nanostrucure in the UV to near-infrared regionsKishin Matsumori, Ryushi Fujimura
ACS Omega|July 18, 2022
Reflection Mechanism of Dielectric Corner Reflectors: The Role of the Diffraction of Evanescent Waves and the Goos-Hänchen ShiftKishin Matsumori, Ryushi Fujimura, Markus Retsch
Optics Express|April 27, 2022
Selective broadband absorption by mode splitting for radiative coolingKishin Matsumori, Ryushi Fujimura, Markus Retsch
The Journal of Physical Chemistry. C, Nanomaterials and Interfaces|October 4, 2023
Electromagnetically Induced Absorption Overcomes the Upper Limit of Light Absorption: Dipole-Dipole Coupling with Phase Retardation in Plasmonic-Dielectric DimersKishin Matsumori, Ryushi Fujimura, Markus Retsch
Nature Communications|May 7, 2024
Radiative cooling and indoor light management enabled by a transparent and self-cleaning polymer-based metamaterialGan Huang, Ashok R Yengannagari, Kishin Matsumori, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Optics Letters|June 16, 2018
Broadband light absorption of an Al semishell-MIM nanostrucure in the UV to near-infrared regionsKishin Matsumori, Ryushi Fujimura
ACS Omega|July 18, 2022
Reflection Mechanism of Dielectric Corner Reflectors: The Role of the Diffraction of Evanescent Waves and the Goos-Hänchen ShiftKishin Matsumori, Ryushi Fujimura, Markus Retsch
Optics Express|April 27, 2022
Selective broadband absorption by mode splitting for radiative coolingKishin Matsumori, Ryushi Fujimura, Markus Retsch
The Journal of Physical Chemistry. C, Nanomaterials and Interfaces|October 4, 2023
Electromagnetically Induced Absorption Overcomes the Upper Limit of Light Absorption: Dipole-Dipole Coupling with Phase Retardation in Plasmonic-Dielectric DimersKishin Matsumori, Ryushi Fujimura, Markus Retsch
Nature Communications|May 7, 2024
Radiative cooling and indoor light management enabled by a transparent and self-cleaning polymer-based metamaterialGan Huang, Ashok R Yengannagari, Kishin Matsumori, et al.
Pageof 1