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Designs and applications of corrugated QWIPs

机译:波纹QWIP的设计与应用

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摘要

In this paper, we will describe the performance of two long wavelength 1024 x 1024 corrugated quantum well infrared photodetector focal plane arrays (C-QWIP FPAs) with cutoff wavelengths at 8.6 and 9.0 mu m, respectively. The FPAs are background limited (BLIP) at around 76 Kin an f/1.8 optical system. In addition to the high performance of these C-QWIPs, the corresponding FPAs are also easily producible, making them ideal for large production. We will discuss the optimization of the detectors for different applications.Since corrugated coupling is wavelength insensitive, it is capable of broadband and multi-color detection. We will present a GaAs/AlGaAs broadband detector based on a binary superlattice design. Incorporating the broadband characteristic in a high gain InGaAs/InP material, C-QWIPs with large background photocurrent can be obtained for high speed applications.For multi-color detection, we have investigated two different approaches. One is based on a voltage-tunable, two-color QWIP material, which can be switched between two detection wavelengths simply by changing the detector bias. Stacking two of these similar QWIPs together and separating them with a middle contact layer, a voltage tunable, four-color detector array can be fabricated. A second approach is to combine a broadband QWIP material with a wavelength-selective light coupling method. Using a light coupling geometry to control the detection wavelength of individual pixels, a large number of wavelengths can be detected based on a single broadband detector material. Published by Elsevier B.V.
机译:在本文中,我们将描述截止波长分别为8.6和9.0μm的两个长波长1024 x 1024波纹量子阱红外光电探测器焦平面阵列(C-QWIP FPA)的性能。 FPA受背景限制(BLIP)限制在约76 Kin f / 1.8光学系统。除了这些C-QWIP的高性能外,相应的FPA也易于生产,使其非常适合大批量生产。由于波纹耦合对波长不敏感,因此能够进行宽带和多色检测,因此我们将讨论针对不同应用的检测器的优化。我们将介绍基于二进制超晶格设计的GaAs / AlGaAs宽带检测器。将宽带特性结合到高增益InGaAs / InP材料中,可以在高速应用中获得具有大背景光电流的C-QWIP。对于多色检测,我们研究了两种不同的方法。一种是基于电压可调的双色QWIP材料,只需更改检测器偏置即可在两个检测波长之间切换。将这两个类似的QWIP堆叠在一起,并用中间接触层将它们分开,可以制造电压可调的四色检测器阵列。第二种方法是将宽带QWIP材料与波长选择光耦合方法结合在一起。使用光耦合几何形状来控制单个像素的检测波长,可以基于一种宽带检测器材料检测大量波长。由Elsevier B.V.发布

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