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Monte Carlo Simulation of Photoconductive Terahertz Sources in Mercury Cadmium Telluride

机译:碲化汞镉中光电导太赫兹源的蒙特卡罗模拟

摘要

In this master's thesis we explore the physics of a photoconductive terahertz emitter and diverse methods to increase its power emission. A way to simulate it via a Monte Carlo first principle simulator is presented, taking into account propagation delays. We show that the simulator is successfully in representing an increase of power with a lowering of the effective mass, an increase of the bias voltage or a stronger laser beam, and that the optical excitation should be focused on the vicinity of the anode. Discussions on screening and scattering effects, along with possible ways to improve the model are addressed.
机译:在本硕士论文中,我们探讨了光导太赫兹发射器的物理原理以及增加其发射功率的各种方法。提出了一种通过蒙特卡洛第一原理仿真器对其进行仿真的方法,其中考虑了传播延迟。我们表明,模拟器成功地代表了功率的增加,有效质量的降低,偏置电压的增加或激光束的增强,并且光激发应集中在阳极附近。讨论了筛选和散射效应以及改进模型的可能方法。

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