Photonics Research, Volume. 7, Issue 2, 193(2019)

Hot-wire chemical vapor deposition low-loss hydrogenated amorphous silicon waveguides for silicon photonic devices

Swe Z. Oo1,2、*, Antulio Tarazona2, Ali Z. Khokhar2, Rafidah Petra1, Yohann Franz2, Goran Z. Mashanovich2, Graham T. Reed2,3, Anna C. Peacock2, and Harold M. H. Chong1
Author Affiliations
  • 1School of Electronics and Computer Science, University of Southampton, SO17 1BJ, UK
  • 2Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK
  • 3School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore, Singapore
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    References(46)

    [1] S. K. A. Neyer, E. Rabe, D. Cai. Polymer waveguide technologies for optical interconnects. European Conference on Integrated Optics (ECIO), ThD0(2007).

    [13] G. Franco, P. Padmanabhan. Optoelectronic properties of amorphous silicon, the role of hydrogen: from experiment to modeling. Optoeletronics: Materials and Techniques, 496(2011).

    [24] A. Takahiro, I. Makoto, M. Takeo, I. Koichi, O. Keisuke, M. Hideki. Propagation loss of amorphous silicon optical waveguides at the 0.8 μm-wavelength range. 7th IEEE International Conference on Group IV Photonics, 269-271(2010).

    [35] R. Carius, J. M. Marshall, D. Dimova-Malinovska. Structural and optical properties of microcrystalline silicon for solar cell applications. Photovoltaic and Photoactive Materials: Properties, Technology and Applications, 353(2002).

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    Swe Z. Oo, Antulio Tarazona, Ali Z. Khokhar, Rafidah Petra, Yohann Franz, Goran Z. Mashanovich, Graham T. Reed, Anna C. Peacock, Harold M. H. Chong, "Hot-wire chemical vapor deposition low-loss hydrogenated amorphous silicon waveguides for silicon photonic devices," Photonics Res. 7, 193 (2019)

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    Paper Information

    Category: Silicon Photonics

    Received: May. 11, 2018

    Accepted: Dec. 18, 2018

    Published Online: Feb. 19, 2019

    The Author Email: Swe Z. Oo (S.Oo@soton.ac.uk)

    DOI:10.1364/PRJ.7.000193

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