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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Dynamics of the transition from strong to weak coupling regime in a system of exciton polaritons in semiconductor microcavities
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Dynamics of the transition from strong to weak coupling regime in a system of exciton polaritons in semiconductor microcavities

机译:半导体微腔中激子极化子系统中从强耦合到弱耦合的跃迁动力学

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The dynamics of polaritonic emission of a GaAs-based microcavity with embedded quantum wells under nonresonant optical excitation is studied. Kinetic dependences of the intensity, spectral position, and linewidth of spontaneous and stimulated emission of the microcavity are measured. It is established that the dynamics of the high-frequency shift of the emission line is qualitatively similar to the dynamics of the emission intensity, but the spectral shift attains its maximum value before the peak intensity is reached. The emission linewidth is maximal immediately after the excitation pulse. Under the conditions of spontaneous emission, the linewidth decreases steadily with time, approaching the value corresponding to low polariton densities. Under lasing conditions, the linewidth is at a minimum when the stimulated-emission intensity attains its peak value. The experimental data are analyzed on the basis of a theoretical model that describes relaxation processes taking into account exciton-exciton and exciton-free carrier interactions.
机译:研究了在非共振光激发下具有嵌入量子阱的基于GaAs的微腔的极化发射动力学。测量了微腔自发和受激发射的强度,光谱位置和线宽的动力学依赖性。已经确定,发射线的高频偏移的动力学在质量上与发射强度的动态相似,但是频谱偏移在达到峰值强度之前达到最大值。在激发脉冲之后,发射线宽最大。在自发发射的条件下,线宽随时间稳定减小,接近对应于低极化子密度的值。在激射条件下,当受激发射强度达到峰值时,线宽最小。在描述松弛过程的理论模型的基础上分析了实验数据,该模型考虑了激子-激子和无激子的载体相互作用。

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