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Optical properties of Mg_xZn_(1-x)O nanowire photonic crystals

机译:Mg_xZn_(1-x)O纳米线光子晶体的光学性质

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We investigate the optical properties of two-dimensional periodic arrays of well-aligned Mg_xZn_(1-x)O nanowires, i.e., Mg_xZn_(1-x)O nanowire photonic crystals. The nanowire photonic crystal can exhibit a photonic band gap in the visible range. As the mole fraction of Mg, x, increases, the edge frequencies of the band gap increase and the band gap size decreases. The characteristics of relative band gap and vacant point defect mode are also studied with varying x. From the finite-difference time-domain simulations, we show that the light extraction from nanowires can be controlled by varying the distance between optically excited nanowires and a waveguide, and the mole fraction of Mg. Controlling the light extraction from nanostructures can be useful in the implementation of nanoscale light emitting devices.
机译:我们研究了排列良好的Mg_xZn_(1-x)O纳米线,即Mg_xZn_(1-x)O纳米线光子晶体的二维周期阵列的光学特性。纳米线光子晶体可以在可见光范围内表现出光子带隙。随着Mg的摩尔分数x增加,带隙的边缘频率增加并且带隙尺寸减小。随x的变化,还研究了相对带隙和空位缺陷模式的特征。从有限差分时域仿真中,我们表明可以通过改变光激发纳米线和波导之间的距离以及Mg的摩尔分数来控制从纳米线提取光。控制从纳米结构提取光在实现纳米级发光器件中可能是有用的。

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