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Polarised two-photon excitation of quantum well excitons for manipulation of optically pumped terahertz lasers

机译:量子阱激子的偏振双光子激发,用于光泵浦太赫兹激光器的操纵

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摘要

Optical pumping of excited exciton states in a semiconductor quantum well embedded in a microcavity is a tool for realisation of ultra-compact terahertz (THz) lasers based on stimulated optical transition between excited (2p) and ground (1s) exciton state. We show that the probability of two-photon absorption by a 2p-exciton is strongly dependent on the polarisation of both pumping photons. Five-fold variation of the threshold power for terahertz lasing by switching from circular to co-linear pumping is predicted. We identify photon polarisation configurations for achieving maximum THz photon generation quantum efficiency.
机译:嵌入微腔中的半导体量子阱中激发激子态的光泵浦是一种基于激子(2p)和基态(1s)激子之间的受激光学跃迁实现超紧凑太赫兹(THz)激光器的工具。我们表明,2p激子吸收两个光子的概率强烈取决于两个泵浦光子的极化。预测了从圆形泵浦到共线性泵浦的太赫兹激光阈值功率的五倍变化。我们确定了实现最大THz光子生成量子效率的光子极化配置。

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