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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Laser-seeding dynamics with few-cycle pulses: Maxwell-Bloch finite-difference time-domain simulations of terahertz quantum cascade lasers
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Laser-seeding dynamics with few-cycle pulses: Maxwell-Bloch finite-difference time-domain simulations of terahertz quantum cascade lasers

机译:具有少周期脉冲的激光播种动力学:太赫兹量子级联激光器的Maxwell-Bloch时域有限差分模拟

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摘要

We implement a Maxwell-Bloch simulation for a two-level system within the finite-difference time-domain method to simulate the seeding of lasers by broadband pulse injection. The model does not make the slowly varying envelope approximation, and the full electromagnetic field is simulated so that we are able to obtain time-resolved seeding by few-cycle pulses. The model is compared to recent results on seeding of THz quantum cascade lasers to aid in the interpretation of their complex signals. The simulations are found to be in good agreement with the data when gain recovery times of 15 ps are used. Furthermore, we find that the emission from the laser depends only weakly on the seed used to initiate laser action. The model is readily applicable to any seeded laser system where few-cycle seed pulses are used.
机译:我们在时域有限差分时域方法中为两级系统实现了Maxwell-Bloch仿真,以通过宽带脉冲注入来模拟激光的播种。该模型不会使包络线缓慢变化,而是对整个电磁场进行了仿真,因此我们能够通过少周期的脉冲来获得时间分辨的种子。该模型与THz量子级联激光器播种的最新结果进行了比较,以帮助解释其复杂信号。当使用15 ps的增益恢复时间时,仿真与数据非常吻合。此外,我们发现激光的发射仅微弱地取决于用于启动激光作用的种子。该模型很容易适用于使用少周期种子脉冲的任何种子激光系统。

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