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首页> 外文期刊>Applied Physics Letters >Role of collisional broadening in Monte Carlo simulations of terahertz quantum cascade lasers
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Role of collisional broadening in Monte Carlo simulations of terahertz quantum cascade lasers

机译:碰撞展宽在太赫兹量子级联激光器的蒙特卡罗模拟中的作用

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摘要

Using a generalized version of Fermi's golden rule, collisional broadening is self-consistently implemented into ensemble Monte Carlo carrier transport simulations, and its effect on the transport and optical properties of terahertz quantum cascade lasers is investigated. The inclusion of broadening yields improved agreement with the experiment, without a significant increase of the numerical load. Specifically, this effect is crucial for a correct modeling at low biases. In the lasing regime, broadening can lead to significantly reduced optical gain and output power, affecting the obtained current-voltage characteristics.
机译:使用费米黄金定律的广义形式,碰撞加宽被一致地实现到整体蒙特卡洛载流子传输模拟中,并研究了其对太赫兹量子级联激光器的传输和光学性质的影响。包括加宽的收率改善了与实验的一致性,而没有明显增加数值负荷。具体而言,此效果对于在低偏差下进行正确建模至关重要。在激射状态下,加宽会导致光学增益和输出功率大大降低,从而影响获得的电流-电压特性。

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