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Enhancement effect of phase-conjugate waves of third order nonlinear medium in the Bragg microcavity

机译:布拉格微腔中三阶非线性介质的相位共轭波的增强作用

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摘要

The enhancement effect of the phase-conjugate wave produced by a third order nonlinear optical medium in a (AB)~N(D)~2(BA)~N Bragg microcavity made of one-dimensional photonic crystals is studied. The gain factor of the phase-conjugate wave is derived when the resonance condition is satisfied by the incident optical wave and the Bragg microcavity mode. Because of stronger resonance enhancement to incident pump beam given by the Bragg microcavity, the enhancement effect of the phase-conjugate wave produced by a third order nonlinear optical medium inside Bragg microcavity is more outstanding than that caused by the naked third order nonlinear optical medium. The theoretical analysis and the numerical calculation show the Bragg microcavity with larger number N of periods is identical with a Fabry -Perot cavity when the resonance condition is satisfied by the incident optical wave and the Bragg microcavity mode.
机译:研究了由一维光子晶体构成的(AB)〜N(D)〜2(BA)〜N Bragg微腔中三阶非线性光学介质产生的相位共轭波的增强效果。当入射光波和布拉格微腔模式满足共振条件时,得出相位共轭波的增益因子。由于布拉格微腔对入射泵浦光束的共振增强较强,因此布拉格微腔内部的三阶非线性光学介质产生的相位共轭波的增强效果要比裸露的三阶非线性光学介质引起的增强。理论分析和数值计算表明,当入射光波和布拉格微腔模式满足共振条件时,具有较大N个周期的布拉格微腔与法布里-珀罗腔相同。

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