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首页> 外文期刊>IEEE Transactions on Electron Devices >Assessment of the Modulation Transfer Function in Infrared Detectors With Anisotropic Material Properties: Type-II Superlattices
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Assessment of the Modulation Transfer Function in Infrared Detectors With Anisotropic Material Properties: Type-II Superlattices

机译:具有各向异性材料特性的红外探测器中调制传递函数的评估:II型超晶格

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摘要

Historically, high-performance infrared (IR) detectors have been fabricated out of materials such as InSb or HgCdTe. These semiconductors have material properties that are isotropic, e.g., the hole mobilities along the in-plane and growth directions are equal. However, IR absorbing materials with anisotropic material properties, such as type-II superlattice (T2SL) materials, based on InAs/GaInSb or InAs/InAsSb, have become increasingly prevalent. Specifically, the hole mobility is much larger along the in-plane direction than the growth direction, which directly impacts detector performance. The impact of utilizing T2SL materials with anisotropic material properties is assessed by simulating the crosstalk and modulation transfer function (MTF) in sequential two-color MW/LW T2SL focal plane arrays. The MTF is a key figure of merit (FOM) in all cameras which describes how well an optical system reproduces an object's contrast in the image at different spatial frequencies. The detector MTF depends on numerous parameters, especially material transport parameters such as themobility, and as such theMTF is sensitive to the mobility anisotropy. This dependence, and the MTF already being a valuable FOM, makes the MTF a natural metric to assess the impacts of adopting an absorbing material with anisotropic material properties.
机译:从历史上看,高性能红外(IR)检测器是用InSb或HgCdTe等材料制成的。这些半导体具有各向同性的材料特性,例如,沿面内和生长方向的空穴迁移率相等。但是,具有各向异性材料特性的红外吸收材料,例如基于InAs / GaInSb或InAs / InAsSb的II型超晶格(T2SL)材料,已变得越来越普遍。具体而言,沿着面内方向的空穴迁移率比生长方向大得多,这直接影响检测器的性能。通过在连续的两色MW / LW T2SL焦平面阵列中模拟串扰和调制传递函数(MTF),可以评估利用具有各向异性材料特性的T2SL材料的影响。 MTF是所有相机中的关键品质因数(FOM),它描述了光学系统在不同空间频率下在图像中再现对象对比度的程度。检测器MTF取决于许多参数,尤其是诸如迁移率之类的材料传输参数,因此MTF对迁移率各向异性敏感。这种依赖性以及MTF已经是有价值的FOM,使得MTF成为评估采用具有各向异性材料特性的吸收材料的影响的自然指标。

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