论文标题

分散微腔中的subband polariton-polariton散射

Intersubband polariton-polariton scattering in a dispersive microcavity

论文作者

Knorr, M., Manceau, J. M., Mornhinweg, J., Nespolo, J., Biasiol, G., Tran, N. L., Malerba, M., Goulain, P., Lafosse, X., Jeannin, M., Stefinger, M., Carusotto, I., Lange, C., Colombelli, R., Huber, R.

论文摘要

使用具有相位稳定的中红外脉冲的非分线泵 - 探针几何形状直接研究了嵌入GAAS/ALGAAS量子井的分散腔中嵌入GAAS/ALGAAS量子孔中的超级散射动力学。在〜25 thz的频率和有限的平面动量下,$ k_ {||} $的选择性激发,导致探针反射率在$ k_ {|||} = 0 $中的窄带最大值的出现。量子机械模型将基本的微观过程识别为刺激的相干偏极散射。这些结果标志着在中和远红外的量化极化系统中,量子控制和骨气激光的重要里程碑。

The ultrafast scattering dynamics of intersubband polaritons in dispersive cavities embedding GaAs/AlGaAs quantum wells are studied directly within their band structure using a non-collinear pump-probe geometry with phase-stable mid-infrared pulses. Selective excitation of the lower polariton at a frequency of ~25 THz and at a finite in-plane momentum, $k_{||}$, leads to the emergence of a narrowband maximum in the probe reflectivity at $k_{||}=0$. A quantum mechanical model identifies the underlying microscopic process as stimulated coherent polariton-polariton scattering. These results mark an important milestone towards quantum control and bosonic lasing in custom-tailored polaritonic systems in the mid and far-infrared.

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