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Origin of Self-Pumped Phase Conjugate Waves in KNSBN Crystals

机译:KNSBN晶体中自泵浦相位共轭波的起源

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摘要

A multistage four-wave mixing interaction region model resulting in self-pumped phase conjugation output of the incident beam is suggested to explain the experimental observations. The competition between forward and backward two-wave mixing is demonstrated and used to explain the formation of the mechanism. The backscattering beams from random noise beams may be amplified by contradirectional two-wave mixing selectively and act as pumped beams from our experimental observations under a laser entering the negative c face of copper-doped potassium sodium strontium barium niobate crystal. The phase conjugation reflectivity of as high as 33% is measured.
机译:提出了一个多级四波混合相互作用区域模型,该模型导致入射光束的自泵浦相位共轭输出,以解释实验结果。演示了向前和向后两波混合之间的竞争,并用来解释机制的形成。来自随机噪声束的反向散射束可以通过双向双向波混合选择性地放大,并在激光进入掺杂铜的钾钠锶钡铌酸盐晶体的负c面下,作为我们实验观察的泵浦束。测得的相位共轭反射率高达33%。

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