Recombination dynamics in quantum-dot infrared photodetectors with spherical and lens-shaped potential

S. Rani, S. Hussain, B. C. Mech, J. Kumar
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Abstract

The recombination time for quantum dot infrared photodetectors (QDIPs) for spherical and lens-shaped potential has been compared for variations of different physical parameters such as radius of quantum dots (QDs), capture rate strength and trap concentration. The geometric shape of QDs has a very strong impact on the response of QDIPs. The effect of different shapes such as spherical and lens-shaped potential on the recombination time has been studied. The longer lifetime, i.e, higher recombination time of excited electrons leads to better response, low dark current and large detectivity. QDIPs which have longer carrier lifetimes have an advantage of higher photoconductive gain and higher operating temperatures. As recombination time directly affects the gain of the device, this parameter has been treated with utmost importance.
具有球面和透镜形势的量子点红外探测器的复合动力学
比较了不同物理参数(量子点半径、捕获速率强度和陷阱浓度)对球形和透镜形势量子点红外探测器(qdip)复合时间的影响。QDs的几何形状对qdip的响应有很大的影响。研究了球面势和透镜势等不同形状对复合时间的影响。激发电子的寿命越长,即复合时间越长,响应越好,暗电流越小,探测率越高。具有较长载流子寿命的qdip具有较高的光导增益和较高的工作温度。由于复合时间直接影响器件的增益,因此对该参数进行了极为重要的处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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