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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Composite patterns formed by paraxial vortex-beams propagation in one-dimensional multilayer plasma photonic crystals
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Composite patterns formed by paraxial vortex-beams propagation in one-dimensional multilayer plasma photonic crystals

机译:一维多层等离子体光子晶体中近轴涡旋光束传播形成的复合图案

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摘要

Optical properties of twisted electromagnetic beam propagating in one-dimensional binary dielectric-plasma photonic crystal are investigated. Reflection and transmission spectra by using nonlinear Transfer Matrix Method of Degenerate Four-Wave Mixing are calculated. These characteristics are studied in low intensity, high temperature range of plasma, large Rayleigh range and neglecting the pumps depletion. In our calculation, the standard slowly varying field approximation is employed. The results show that the composite vortex patterns in the left of photonic crystal structure is dependent on the beam vortex charge number, the incident beam frequency and plasma temperature. Also, it is indicated that reflection and transmission may be more than unity for the sake of amplifying through the nonlinear medium. In fact, this structure can be exploited for characterization of phase conjugation in multilayer optical structures and optoelectronic.
机译:研究了在一维二元介电等离子体光子晶体中传播的扭曲电磁束的光学特性。利用简并四波混频的非线性传递矩阵法计算了反射和透射光谱。在低强度,高温等离子体范围,大瑞利范围以及忽略泵损耗的情况下研究了这些特性。在我们的计算中,采用标准的缓慢变化的磁场近似值。结果表明,光子晶体结构左侧的复合涡旋图形取决于束流涡电荷数,入射束频率和等离子体温度。此外,还指出,为了放大通过非线性介质,反射和透射可以大于一。实际上,该结构可用于表征多层光学结构和光电器件中的相位共轭。

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