Photonics Research, Volume. 2, Issue 6, 182(2014)

Optical mode study of III–V-nanowire-based nanophotonic crystals for an integrated infrared band microlaser

Zhen Lin*, Michel Gendry, and and Xavier Letartre
Author Affiliations
  • Universite de Lyon, Institut des Nanotechnologies de Lyon (INL), UMR CNRS 5270, Ecole Centrale de Lyon, 36 avenue Guy de Collongue, F 69134 Ecully Cedex, France
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    Figures & Tables(7)
    (a) Photonics array with an infinite number of InP NWs and (b) InP NWs (n1=3.23) in a SiO2 environment (n2=1.53).
    Optical modes in a NW photonics array with various NW diameters d and photonic periodic lengths a in (a) TM and (b) TE polarization.
    TM mode spectrum and its mode with different NW diameters d.
    TM modes with different wave vectors β.
    TE modes with different wave vectors β.
    • Table 1. TM Mode Resonance Wavelengths with Different Wave Vectors β

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      Table 1. TM Mode Resonance Wavelengths with Different Wave Vectors β

      d=0.1μmβ (π/a)0.90.920.950.970.980.991
      Lambda (μm)1.35611.32991.28971.26261.24881.23671.2263
      d=0.2μmβ (π/a)0.90.920.950.970.980.991
      Lambda (μm)1.37521.35451.32151.30281.29621.29291.2913
    • Table 2. TE Mode Resonance Wavelengths with Different Wave Vectors β

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      Table 2. TE Mode Resonance Wavelengths with Different Wave Vectors β

      d=0.1μmβ (π/a)0.90.920.950.970.980.991
      Lambda (μm)1.13711.11791.09281.08131.07791.07561.0750
      d=0.2μmβ (π/a)0.90.920.950.970.980.991
      Lambda (μm)1.33421.32301.31031.30451.30281.30111.3003
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    Zhen Lin, Michel Gendry, and Xavier Letartre. Optical mode study of III–V-nanowire-based nanophotonic crystals for an integrated infrared band microlaser[J]. Photonics Research, 2014, 2(6): 182

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    Paper Information

    Category: Microlasers

    Received: Apr. 4, 2014

    Accepted: Sep. 19, 2014

    Published Online: May. 21, 2015

    The Author Email: Zhen Lin (zhenlin_79@hotmail.com)

    DOI:10.1364/PRJ.2.000182

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