• Photonics Research
  • Vol. 2, Issue 6, 182 (2014)
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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    DOI: 10.1364/PRJ.2.000182 Cite this Article Set citation alerts
    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 Copy Citation Text show less
    (a) Photonics array with an infinite number of InP NWs and (b) InP NWs (n1=3.23) in a SiO2 environment (n2=1.53).
    Fig. 1. (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.
    Fig. 2. 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.
    Fig. 3. TM mode spectrum and its mode with different NW diameters d.
    TM modes with different wave vectors β.
    Fig. 4. TM modes with different wave vectors β.
    TE modes with different wave vectors β.
    Fig. 5. TE modes 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 1. TM Mode Resonance Wavelengths with Different Wave Vectors β
    d=0.1μmβ (π/a)0.90.920.950.970.980.991
    Lambda (μm)1.13711.11791.09281.08131.07791.07561.0750
    d=0.2μmβ (π/a)0.90.920.950.970.980.991
    Lambda (μm)1.33421.32301.31031.30451.30281.30111.3003
    Table 2. TE Mode Resonance Wavelengths with Different Wave Vectors β
    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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