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Investigation of second order optical nonlinearity at the surface of GaP nanowaveguides

机译:GaP纳米波导表面的二阶光学非线性研究

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Nonlinear optical properties of semiconductor nanowaveguides/nanowires are determined by both their crystal symmetry and geometry. For diameters comparable to the wavelength, high contrast of refractive index between the nanostructure and surrounding air leads to strong optical anisotropy [1]. It has been shown that for nanowaveguides with certain diameters (depending on the wavelength), the effect of electric field with polarization normal to the surface becomes significant [2]. The induced surface effect can consequently be utilized for second harmonic generation (SHG) in nanowaveguide. Nonlinear optical susceptibility at the surface results from the material discontinuity and electric quadrupole contribution [3], whereas the bulk nonlinearity is defined by the crystal symmetry.
机译:半导体纳米波导/纳米线的非线性光学特性取决于其晶体对称性和几何形状。对于与波长可比的直径,纳米结构与周围空气之间折射率的高对比度会导致强烈的光学各向异性[1]。已经显示出,对于具有特定直径(取决于波长)的纳米波导,具有垂直于表面极化的电场的影响变得显着[2]。因此,所诱导的表面效应可用于纳米波导中的二次谐波产生(SHG)。表面的非线性光学磁化率是由材料的不连续性和四极电学贡献引起的[3],而整体非线性则由晶体对称性决定。

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