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Modeling of Mid-Infrared Quantum Cascade Laser by Means of Nonequilibrium Green's Functions

机译:非平衡格林函数对中红外量子级联激光器的建模

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摘要

Nonequilibrium Green's function (NEGF) calculations of mid-infrared quantum cascade laser (QCL) that preserve real-space basis have been performed. The approach developed in this paper relies on two improvements introduced to nonequilibrium Green's functions/Poisson computational scheme. First, the boundaries of single laser stage were carefully designed as to maintain its periodicity with the whole quantum cascade structure. Second, the NEGF/Poisson solver was equipped with several controlling features that enable the restoration of convergence of the method for quite complex structures with many resonances and boundary conditions for Poisson equation set inside the structure. With this simulation tool, calculations for an anticrossed diagonal design of mid-infrared QCL have been performed. Results agree with experimental data (threshold current of ~4.2 kA/cm2 at material gain of ~70/cm) and the current understanding of carrier transport in such devices.
机译:进行了保留实空间基础的中红外量子级联激光器(QCL)的非平衡格林函数(NEGF)计算。本文开发的方法依赖于对非平衡格林函数/泊松计算方案进行的两项改进。首先,精心设计了单个激光平台的边界,以保持其与整个量子级联结构的周期性。其次,NEGF /泊松求解器具有多种控制功能,这些功能使得对于具有许多共振和结构内部泊松方程集边界条件的非常复杂的结构,该方法的收敛性得以恢复。使用该仿真工具,已对中红外QCL的反交叉对角线设计进行了计算。结果与实验数据(材料增益为〜70 / cm时的阈值电流为〜4.2 kA / cm 2 )以及当前对此类器件中载流子传输的理解相吻合。

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