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Quantum-well infrared photodetector structure synthesis: methodology and experimental verification

机译:量子孔红外光电探测器结构合成:方法论和实验验证

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摘要

A numerical method for global optimization of quantum-well infrared photodetector (QWIP) performance parameters is presented and experimentally verified. The single-band effective-mass Schroedinger equation is solved by employing the argument principle method (APM) to extract both the bound and quasibound eigen-energies of the quantum heterostructure. APM is combined with a simulated annealing algorithm to determine a set of device design parameters such as potential barrier height V/sub i/, layer thickness d/sub i/, number of material layers N, total device length, applied bias V/sub Bias/ etc., for which the QWIP performance is within a predetermined convergence criterion. The method presented incorporates the effect of energy-dependent effective mass of electrons in nonparabolic conduction bands. The present model can handle many optimization parameters and can incorporate fabrication constraints to achieve physically realizable devices. In addition, the method is not limited to the optimization of absorption structures, and can be used for other intersubband devices such as electron-wave Fabry-Perot filters and quantum-cascade lasers. The strength and versatility of the present method are demonstrated by the design of a bicolor equal-absorption-peak QWIP structure, and experimental verification of the zero-bias absorption spectrum is presented.
机译:介绍了对全局优化的数值方法,并介绍了量子井红外光电探测器(QWIP)性能参数的数值方法。通过采用参数原理方法(APM)来提取量子异质结构的结合和拟虫尖端能量来解决单带有效质量鞘翅格方程。 APM与模拟退火算法组合,以确定一组设备设计参数,例如潜在屏障高度V / SUB I /,层厚度D / SUB I /,材料层数N,总器件长度,施加的偏压V / SUB QIAS /等,QWIP性能在预定的收敛标准中。呈现的方法包括在非对代原因传导带中的能量依赖性有效质量的电能的效果。本模型可以处理许多优化参数,并且可以包含制造限制以实现物理可实现的设备。另外,该方法不限于吸收结构的优化,并且可以用于其他基间装置,例如电子波法布里 - 珀罗滤光器和量子级联激光器。本方法的强度和多功能性通过设计双色的相等吸收 - 峰值QWIP结构来证明,并提出了对零偏置吸收光谱的实验验证。

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