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Development of a far-infrared detector array for FIRST based on n-type ultrapure liquid phase epitaxial gallium arsenide

机译:基于n型超纯液相外延砷化镓的FIRST远红外探测器阵列的研制

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Abstract: We consider a 16 $MUL 16 pixel GaAs photoconductive detector array as a new candidate for an ESA-sponsored detector development program. A photoconductor array covering the wavelength range from 150 to 300 microns can add to the capability of the far infrared imaging spectrometer in the model payload of FIRST (far infra-red and submillimeter space telescope). The GaAs detector array is a completely new development. The spectral response of GaAs has been known for years; gallium arsenide, however, was at that time not available in a quality to bring dark current and NEP at operating temperatures around 1 K down to levels of state of the art photoconductors. Recent progress in liquid phase epitaxy led to the production of very high purity GaAs. Contamination from the growth system can now be kept below the required donor concentration leading to n-type GaAs layers. Photoluminescence spectra indicate low compensation, a vital requirement for getting effective photoconductive detectors. Layers with a thickness of a few hundred microns were recently produced. The GaAs detector is likely to become available within the next few years. The paper discusses investigations of the material and first results of sampling detector development. !12
机译:摘要:我们认为16 $ MUL 16像素GaAs光电导探测器阵列是ESA赞助的探测器开发计划的新候选者。在FIRST(远红外和亚毫米空间望远镜)的模型有效载荷中,覆盖150至300微米波长范围的光电导体阵列可以增加远红外成像光谱仪的功能。 GaAs检测器阵列是一个全新的发展。 GaAs的光谱响应已为人所知。但是,当时砷化镓的质量无法将暗电流和NEP在约1 K的工作温度下降低到最先进的光电导体水平。液相外延的最新进展导致了高纯度GaAs的生产。现在可以将来自生长系统的污染保持在所需的供体浓度以下,从而形成n型GaAs层。光致发光光谱表明补偿低,这是获得有效的光电导检测器的重要要求。最近生产了几百微米厚的层。 GaAs检测器可能会在未来几年内投入使用。本文讨论了采样检测器开发的材料和初步结果的调查。 !12

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