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首页> 外文期刊>Quantum electronics >Self-excitation of mutually phase-conjugated light waves in a cubic gyrotropic photorefractive crystal subjected to a square-wave electric field
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Self-excitation of mutually phase-conjugated light waves in a cubic gyrotropic photorefractive crystal subjected to a square-wave electric field

机译:方波电场下立方旋光折光晶体中互相共轭光的自激

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摘要

Stationary four-wave mixing in a shifted photorefractive transmission grating formed in cubic gyrotropic crystals of the 23 symmetry is considered in the case of low contrasts of the original optical interference pattern. Expressions for the transmission and reflection coefficients for the phase conjugation of weak light beams in arbitrarily cut samples are obtained by solving exactly the equations for the coupled waves that include the effects of the natural circular birefringence and the linear birefringence induced by the external field. The conditions for the generation of phase-conjugated waves are determined for the mixing at 633 nm in Bi_(12)SiO_(20) and Bi_(12)TiO_(20) samples in the case when the grating vector is parallel to the [110] axis and the incident pump waves propagate in the (001) crystal plane and have arbitrary polarisations.
机译:在原始光学干涉图案的对比度较低的情况下,可以考虑在由23个对称的立方旋涡晶体形成的移动光折变透射光栅中进行固定四波混频。通过精确求解耦合波的方程,可以得到任意剪切的样本中弱光束的相位共轭的透射和反射系数的表达式,这些方程包括自然圆双折射和外场引起的线性双折射的影响。在光栅矢量平行于[110]的情况下,确定在Bi_(12)SiO_(20)和Bi_(12)TiO_(20)样品中在633 nm处混合时产生相位共轭波的条件。轴和入射泵浦波在(001)晶面中传播并具有任意极化。

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