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Kinetics of Stimulated Polariton Scattering in Planar Microcavities: Evidence for a Dynamically Self-Organized Optical Parametric Oscillator

机译:平面微腔中受激极化子散射的动力学:动态自组织光学参量振荡器的证据。

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摘要

Strong temporal hysteresis effects in the population kinetics of pumped and scattered lower polaritons (LPs) have been observed in a planar semiconductor microcavity under a nanosecond-long pulsed resonant excitation (by frequency and angle) near the inflection point of the LPs' dispersion. The hysteresis loops have a complicated shape due to the interplay of two instabilities. The self-instability (bistability) of the nonlinear pumped LP is accompanied by a strong parametric instability which causes an explosive growth of the scattered LPs' population over a wide range of wave vectors. Finally, after a 30-500 ps period, a three-mode scattering pattern forms, thereby demonstrating a dynamically self-organized regime of the optical parametric oscillator. Stability is maintained by the presence of numerous weak "above-condensate" modes; the whole system therefore appears to be highly correlated.
机译:在平面半导体微腔内,在纳秒长的脉冲共振激发下(按频率和角度),在LPs的色散拐点附近,在平面半导体微腔中观察到了泵浦和散射的下极化子(LP)的总体动力学中的强烈的时间滞后效应。磁滞回线由于两个不稳定性的相互作用而具有复杂的形状。非线性泵浦LP的自不稳定(双稳态)伴随着强烈的参数不稳定性,这会导致分散的LP群体在广泛的波矢量上爆炸性增长。最终,在30-500 ps的周期后,形成了三模式散射图,从而证明了光学参量振荡器的动态自组织机制。通过存在许多弱的“冷凝上方”模式可以保持稳定性;因此,整个系统似乎高度相关。

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