具有Pöschl-Teller势的双量子阱结构在MWIR光电探测器设计中的边界态计算

A. Chakraborty, Suporna Bhowmick, Debarati Chakraborty, A. Deyasi, A. Sarkar
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引用次数: 0

摘要

数值分析了双阱三势垒结构的最低两个量子态Pöschl-Teller势场。考虑了一阶kane型带非抛物性的合理复制目的,并在遵循BenDaniel Duke边界条件的计算中考虑了井层和障层之间的有效质量失配。透射系数绘制为输入能量通量的函数,并在存在和不存在外电场时识别出特征态确定的峰值。结果与理想矩形几何结构的结果进行了比较,更好的准峰特性有利于所提出的光电探测器结构的应用,其中可以通过结构参数的变化来实现子带能量的剪裁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Boundstates Computation for Double Quantum Well Structure with Pöschl-Teller Potential for MWIR Photodetector Design
Lowest two quantum states of a double-well-triple-barrier structure are numerically analyzed for Pöschl-Teller potential profile. Kane-type band nonparabolicity of first order is considered for rational replication purpose, and effective mass mismatch between well and barrier layers are included in the computation following the BenDaniel Duke boundary conditions. Transmission coefficient is plotted as a function of input energy flux, and peaks are identified for eigenstate determination in presence and absence of external electric field. Results are compared with that obtained for ideal rectangular geometry, and better quasi-peak characteristics speaks in favor of the proposed structure for photodetector application, where tailoring of subband energy can be achieved by means of structural parameter variations.
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