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Transverse modulational instability in counterpropagating two-wave mixing with frequency-detuned pump beams

机译:与频率失调的泵浦光束反向传播的两波混合中的横向调制不稳定性

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摘要

We report theoretical and experimental evidence for transverse modulational instability of two counterpropagating beams in a photorefractive medium with no external feedback. A frequency detuning is applied to one of the beams in order to drive the system to instability. We perform a linear-stability analysis that allows for detuning of the counterpropagating pump beams in addition to an additional frequency detuning of the generated sidebands relative to the main beams. The threshold condition for the general case of a complex photorefractive coupling constant is found, and instability is predicted for diffusion-dominated, drift-dominated, and mixed charge transport. We show that for the specific case of diffusion-dominated charge transport, transverse instability is always accompanied by a frequency shift of the sidebands. For frequency-degenerate pump beams the instability threshold is reached at a coupling-constant times interaction-length product of gammal = 5.25i. The threshold is lowered (raised) for small positive (negative) frequency shifts of one of the pump beams. The theoretical predictions were verified experimentally with a photorefractive crystal of KNbO3. A modulational instability resulting in a spatially periodic roll pattern was observed for a certain range of positive frequency detunings. Measurements of the transverse scale of the structures and the relative sideband intensities were in agreement with the theoretical analysis. (C) 2001 Optical Society of America. [References: 33]
机译:我们报告理论和实验的证据在没有外部反馈的情况下,在光折射介质中两个反向传播光束的横向调制不稳定性。频率失谐作用于光束之一,以使系统不稳定。我们执行线性稳定性分析,除了相对于主波束产生的边带发生额外的频率失谐之外,还可以使反向传播的泵浦波束失谐。找到了复杂的光折变耦合常数的一般情况的阈值条件,并预测了扩散为主,漂移为主和混合电荷传输的不稳定性。我们表明,对于以扩散为主的电荷传输的特定情况,横向不稳定性总是伴随着边带的频移。对于频率退化的泵浦光束,在耦合常数倍gammal = 5.25i的相互作用长度乘积下达到不稳定性阈值。对于泵浦光束之一的小的正(负)频移,降低(提高)阈值。用KNbO3的光折变晶体通过实验验证了理论预测。对于一定范围的正频率失谐,观察到导致空间周期性滚动模式的调制不稳定性。结构的横向尺度和相对边带强度的测量与理论分析一致。 (C)2001年美国眼镜学会。 [参考:33]

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