Research field (5):
Perceptual information processing
, High-performance computing
, Electronic devices and equipment
, Optical engineering and photonics
, Computational science
Research keywords (4):
境界要素法
, 逆散乱問題
, ホログラフィー
, 計算電磁気学
Research theme for competitive and other funds (8):
2023 - 2027 Low-Power AI Using Light Wave Diffraction -Massively Parallel Processing of Multi-Class Classification with Preserved Location Information of Objects-
2019 - 2023 汎用ガラスを用いたホログラム採光窓の作製
2019 - 2022 Optimum design method of high-performance and wide-band optical integrated cuirts
2019 - 2022 Holorecognizer: implementation expansion of machine learning to optical setup for three-dimensional recognition
2018 - 2019 微細加工技術の簡素化へ向けたフォトンシーブホログラムの開発
2017 - 2018 準結晶パターンを用いた位相型計算機ホログラムの実現可能性の検討
2016 - 2016 準結晶パターンを利用した超高分解能計算機ホログラムの開発
2008 - 2010 2次元フォトニック結晶を用いた光バッファ回路の開発
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Papers (52):
Jun-Ichiro Sugisaka, Koichi Hirayama, Takashi Yasui. Design of scatterometry with optoelectronic machine learning for discriminating nanohole cross-sectional structure. Journal of the Optical Society of America A. 2024
Jun-Ichiro Sugisaka, Shingo Shimada, Koichi Hirayama, Takashi Yasui. Design of an optical linear-discriminant filter: optimization for enhancement of filter transmittance and discrimination accuracy. Journal of the Optical Society of America A. 2023. 41. 1. 139-139
Takashi YASUI, Jun-ichiro SUGISAKA, Koichi HIRAYAMA. Bending Loss Analysis of Chalcogenide Glass Channel Waveguides for Mid-Infrared Astrophotonic Devices. IEICE Transactions on Electronics. 2023. E106.C. 3. 107-110
Jun-ichiro Sugisaka, Kenji Harada, Koichi Hirayama. Inverse scattering algorithm for profile reconstruction of a buried defect beneath a dielectric rough surface based on the domain-boundary integral hybrid method. Journal of the Optical Society of America A. 2022. 39. 9. 1682-1693
Jun-ichiro Sugisaka, Ko Onishi. Optimal design of photon-sieve holograms for fine-line image generation. Journal of Optics. 2022. 24. 3. 035605-035605