基于Pt/CdS与InSb光伏型紫外—红外焦平面探测器的双色探测机理

O472+.8; 基于新型的时域有限差分光子学分析方法联合有限元电学分析方法研究了Pt/CdS紫外与InSb红外双色焦平面阵列探测器的双色探测机理.研究发现超薄Pt金属膜与CdS形成肖特基结可以获得较大的紫外光响应并能更好耦合红外光.采用像元间距为50μm的Pt/CdS与InSb键合结构,可以很好地抑制像元间的串音,结果证明了紫外-红外双色探测的可行性,该方法将为紫外—红外双色探测器的设计提供基础指导....

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Published in红外与毫米波学报 Vol. 36; no. 4; pp. 385 - 388
Main Author 李庆 白杰 吕衍秋 胡伟达 陈效双 陆卫
Format Journal Article
LanguageChinese
Published 中国科学院大学,北京100049%中国科学院上海技术物理研究所,上海,200083%中国空空导弹研究院,河南洛阳,471009 2017
中国科学院上海技术物理研究所,上海200083
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ISSN1001-9014
DOI10.11972/j.issn.1001-9014.2017.04.001

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Summary:O472+.8; 基于新型的时域有限差分光子学分析方法联合有限元电学分析方法研究了Pt/CdS紫外与InSb红外双色焦平面阵列探测器的双色探测机理.研究发现超薄Pt金属膜与CdS形成肖特基结可以获得较大的紫外光响应并能更好耦合红外光.采用像元间距为50μm的Pt/CdS与InSb键合结构,可以很好地抑制像元间的串音,结果证明了紫外-红外双色探测的可行性,该方法将为紫外—红外双色探测器的设计提供基础指导.
Bibliography:dual-color focal-plane arrays, Pt/CdS ultraviolet detector, InSb infrared detector
31-1577/TN
Based on finite difference time domain method (FDTD) and finite element method (FEM), the mechanism of Pt/CdS and InSb ultraviolet-infrared dual-color focal-plane arrays was investigated. It was found that a high ultraviolet photo response can be achieved for Pt/CdS Schottky junction under an ultrathin Pt top contact. Fur- ther simulations show that the ultrathin top contact can efficiently couple the infrared radiation for the dual-color focal-plane array detector. The center to center spacing of each pixel of 50 tzm in the ultraviolet and infrared dual- color focal-plane array detector based on Pt/CdS and InSb junctions can significantly reduce crosstalk. Our work provides fundamental guidance for optimization and design of ultraviolet and infrared dual-color detector.
LI Qing1,2, BAI Jie1, LV Yan-Qiu3, HU Wei-Da1 , CHEN Xiao-Shuang1, LU Wei1 ( 1. Shanghai Institute of Technical Physics, Chinese Academy of Sciences, S
ISSN:1001-9014
DOI:10.11972/j.issn.1001-9014.2017.04.001