Papers - Tsuji Yasuhide

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  1. Analysis of NRD guide devices using rigorous two-dimensional full-vectorial FDTD method

    Bashir Tahir, Morimoto Keita, Iguchi Akito, Tsuji Yasuhide, Kashiwa Tatsuya,MICROWAVE AND OPTICAL TECHNOLOGY LETTERS,vol.65,(2),(p.447 ~ 453),2023.02

  2. Optimal design of optical waveguide devices utilizing beam propagation method with ADI scheme

    A. Iguchi and Y. Tsuji,IEICE Transactions on Electronics,vol.E105-C,(11),(p.644 ~ 651),2022.11

  3. Topology optimal design of NRD guide devices using function expansion method and evolutionary approaches

    N. Hieda, K. Morimoto, A. Iguchi, Y. Tsuji, and T. Kashiwa,IEICE Transactions on Electronics,vol.E105-C,(11),(p.652 ~ 659),2022.11

  4. New Insights of Polarization Beam Splitter Based on Sinusoidally Driven Directional Coupler

    Iguchi Akito, Tsuji Yasuhide,IEEE PHOTONICS JOURNAL,vol.14,(4),Article Number:6634106,2022.08

  5. Efficient Full-Vectorial Finite Element Analysis for Circularly Symmetric Waveguides

    Morimoto Keita, Iguchi Akito, Tsuji Yasuhide,JOURNAL OF LIGHTWAVE TECHNOLOGY,vol.40,(13),(p.4351 ~ 4356),2022.07

  6. ビーム伝搬法を活用した光回路デバイスの構造最適設計

    井口 亜希人, 辻 寧英,電子情報通信学会論文誌C,vol.J105-C,(6),(p.176 ~ 184),2022.06

  7. Mosaic Based Optimization of NRD Guide Devices Using Binary Evolutionary Approaches and 2D-FVFEM

    Bashir Tahir, Morimoto Keita, Iguchi Akito, Tsuji Yasuhide, Kashiwa Tatsuya,IEEE ACCESS,vol.10,(p.60682 ~ 60695),2022.06

  8. 3次元光デバイスの効率的なトポロジー最適設計に関する検討

    奥谷 怜平, 森本 佳太, 井口 亜希人, 辻 寧英,電子情報通信学会論文誌C,vol.J105-C,(5),(p.176 ~ 184),2022.05

  9. ミリ波NRDガイドのトポロジー最適設計と新素子の開発

    柏 達也, 辻 寧英,電子情報通信学会論文誌B,vol.J105-B,(3),2022.03

  10. Optimal design of broadband non-radiative dielectric guide devices using binary genetic algorithm and 2D-FVFEM

    Bashir Tahir, Morimoto Keita, Iguchi Akito, Tsuji Yasuhide, Kashiwa Tatsuya, Nishiwaki Shinji,INTERNATIONAL JOURNAL OF NUMERICAL MODELLING-ELECTRONIC NETWORKS DEVICES AND FIELDS,Article Number:e2984,2022.01

  11. Optimal design of NRD guide devices using 2D full-vectorial finite element method

    Bashir Tahir, Morimoto Keita, Iguchi Akito, Tsuji Yasuhide, Kashiwa Tatsuya, Nishiwaki Shinji,IEICE ELECTRONICS EXPRESS,vol.18,(15),Article Number:20210243,2021.08

  12. Optimal design of dielectric flat lens utilizing Bayesian optimization

    Kudo Koji, Morimoto Keita, Iguchi Akito, Tsuji Yasuhide, Kashiwa Tatsuya,MICROWAVE AND OPTICAL TECHNOLOGY LETTERS,vol.63,(7),(p.1978 ~ 1983),2021.07

  13. Bidirectional Beam Propagation Method Based on Axi-Symmetric Full-Vectorial Finite Element Method

    Iguchi Akito, Morimoto Keita, Tsuji Yasuhide,IEEE PHOTONICS TECHNOLOGY LETTERS,vol.33,(14),(p.707 ~ 710),2021.07

  14. モード結合理論と機械学習を用いた3 次元光導波路デバイスの最適設計の効率化に関する研究

    工藤滉司,森本佳太,井口亜希人,辻 寧英,電子情報通信学会論文誌C,vol.J104-C,(5),(p.137 ~ 145),2021.05

  15. Novel scattering operator for arbitrary finite element models in optical waveguides

    Keita Morimoto, Akito Iguch, and Yasuhide Tsuji,JOURNAL OF LIGHTWAVE TECHNOLOGY,vol.39,(9),(p.2941 ~ 2948),2021.05

  16. 進化的手法と勾配法を用いた多目的最適設計による光デバイスの構造単純化に関する検討

    富安柾斗,森本佳太,井口亜希人,辻 寧英,電子情報通信学会論文誌C,vol.J104-C,(5),(p.146 ~ 154),2021.05

  17. Two-Dimensional Full-Vectorial Finite Element Analysis of NRD Guide Devices

    Tsuji Yasuhide, Morimoto Keita, Iguchi Akito, Kashiwa Tatsuya, Nishiwaki Shinji,IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS,vol.31,(4),(p.345 ~ 348),2021.04

  18. Efficient topology optimization of optical waveguide using finite element method based on slowly varying envelope approximation

    Keita Morimoto, Akito Iguchi and Yasuhide Tsuji,Optik,vol.226,(1),Article Number:165951,2021.01

  19. Function-expansion-based topology optimization of three-dimensional optical waveguide devices with multi-layered structure considering layer thickness

    S. Tomioka, A. Iguchi, and Y. Tsuji,Optics Communications,vol.474,Article Number:126094,2020.11

  20. A study on function-expansion-based topology optimization without gray area for optimal design of photonic devices

    M. Tomiyasu, K. Morimoto, A. Iguchi, and Y. Tsuji,IEICE Transactions on Electronics,vol.E103-C,(11),(p.560 ~ 566),2020.11

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