Asymmetric Waveguide-Coupled Scheme for Multi-striped Orthogonal Photon-Photocarrier-Propagation Solar Cell (MOP3SC)

Author:

Ishibashi Akira12,Sawamura Nobuo1,Matsuoka Takashi3,Kobayashi Hikaru4,Kasai Tsuyoshi1

Affiliation:

1. Research Institute for Electronic Science, Hokkaido University

2. Dept. Condensed Matter Physics, Graduate School of Science, Hokkaido University

3. Institute of Materials Research, University of Tohoku

4. Institute of Scientific and Industrial Research, Osaka University

Publisher

The Materials Research Society of Japan

Reference16 articles.

1. [1] M.A. Green, Y. Hishikawa, E.D. Dunlop, D.H. Levi, J.H. Ebinger, A.W. Ho-Baillie, “Solar cell efficiency tables (version 51),” Prog. Photovolt. Res. Appl. 26, 3-12 (2018)

2. [2] W.G.J.H.M. van Sark, K.W.J. Barnham, LH. Slooff, A.J. Chatten, A. Büchtemann, A. Meyer, S.J. McCormack, R. Koole, D.J. Farrell, R. Bose, E.E. Bende, A.R. Burgers, T. Budel, J. Quilitz, M. Kennedy, T. Meyer, C.D.M. Donegá, A. Meijerink, D. Vanmaekelbergh, “Luminescent Solar Concentrators - A review of recent results”, Optics Express, 16, 21773-21792 (2013)

3. [3] A. Ishibashi, N. Kawaguchi, K. Kondo, H. Kaiju, S. White, “Spiral-heterostructure-based new high-efficiency solar cells”, Proc. 6th Int. Symp. Environmentally Conscious Design and Inverse Manufacturing (Ecodesign2009), Sapporo, Japan, 2009, pp. 55-58

4. [4] A. Ishibashi, H. Kobayashi, N. Sawamura, K. Kondo, T. Kasai, “Symmetric and asymmetric waveguides for multi-striped orthogonal photon-photocarrier-propagation solar cells”, IEEE-ICASI, Meen, Prior & Lam (eds.) , 2017, pp. 1477-1479

5. [5] O. Alpert,” Long-Range Wireless Power Delivery by Infrared Light Beam -New Applications for Homes, Offices, Factories and Public Spaces”, Proc. 1st Optical Wireless and Fiber Power Transmission Conference (OWPT2019), Yokohama, Japan, 2019, pp. 1-02-1 - 1-02-2

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