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Substrate-Removed HgCdTe-Based Focal-Plane Arrays for Short-Wavelength Infrared Astronomy

机译:用于短波长红外天文的基于衬底的基于HgCdTe的焦平面阵列

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摘要

Removal of the CdZnTe substrate offers several performance benefits for near-infrared (NIR, 1.7 (mu)m) and short-wave infrared (SWIR, 2.5 (mu)m) focal-plane arrays (FPAs). Among these are visible wavelength detection, improved infrared sensitivity and uniformity, and greatly reduced susceptibility to the effects of ionizing radiation. Data for substrate-removed NIR FPAs fabricated for the Wide Field Camera 3 (WFC3) upgrade to the Hubble Space Telescope (HST) are presented, including detailed data from delivered units and summary trends for additional units. The WFC3 flight FPA is expected to improve discovery speed by 3.5-120X over current HST instruments. For SWIR FPAs, selected results are presented from the 16 megapixel mosaic delivered to Observatories of Carnegie Institution in Washington which serve as an example of the current state of the art.
机译:去除CdZnTe基板可为近红外(NIR,1.7μm)和短波红外(SWIR,2.5μm)焦平面阵列(FPA)提供一些性能优势。其中包括可见光波长检测,改进的红外灵敏度和均匀性,以及大大降低了对电离辐射影响的敏感性。展示了为广角相机3(WFC3)升级为哈勃太空望远镜(HST)而制造的去除基材的NIR FPA的数据,包括已交付装置的详细数据和其他装置的摘要趋势。与目前的HST仪器相比,WFC3飞行FPA有望将发现速度提高3.5-120倍。对于SWIR FPA,从交付给华盛顿卡内基研究所天文台的16兆像素马赛克中展示了选定的结果,这些马赛克是当前技术水平的一个示例。

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