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首页> 外文期刊>Journal of Electronic Materials >Far-Infrared detector based on HgTe/HgCdTe Superlattices
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Far-Infrared detector based on HgTe/HgCdTe Superlattices

机译:基于HgTe / HgCdTe超晶格的远红外探测器

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摘要

HgTe/Hg_(0.05)Cd_(0.95)Te superlattices (SLs) were grown on (112)B oriented Cd_(0.96)Zn_(0.04)Te substrates using molecular beam epitaxy (MBE). The SLs, consisting of 100 periods of 80-A-thick HgTe wells alternating with 77-A-thick Hg_(0.05)Cd_(0.95)Te barriers, were designed to operate as detectors in the far-infrared (FIR) region. Infrared absorption spectroscopy, high-resolution transmission electron microscopy (TEM), Hall effect measurements, and x-ray diffraction were used to characterize the superlattice layers. A series of annealing experiments were initiated to quantify the temperature-dependent inter diffusion of the HgTe wells and Hg_(0.05)Cd_(0.95)Te barriers and consequently their degradation, which shifts the absorption edges of the SLs to higher energies, since a high-temperature ex situ anneal is normally required in order to produce the p-type material required for a photovoltaic detector. Results from infrared absorption spectroscopy, TEM, and Hall effect measurements for the annealed samples are presented. AFIR SLs single-element photoconductive (PC) device was designed and fabricated. Both material characterization and device testing have established the applicability of the HgTe/Hg_(03.05)Cd_(0.95)Te SLs for the FIR region.
机译:HgTe / Hg_(0.05)Cd_(0.95)Te超晶格(SLs)使用分子束外延(MBE)在(112)B取向的Cd_(0.96)Zn_(0.04)Te衬底上生长。 SL由100个周期的80A厚的HgTe阱与77A厚的Hg_(0.05)Cd_(0.95)Te势垒交替组成,被设计用作远红外(FIR)区域中的检测器。红外吸收光谱,高分辨率透射电子显微镜(TEM),霍尔效应测量和X射线衍射被用来表征超晶格层。启动了一系列退火实验,以量化HgTe阱和Hg_(0.05)Cd_(0.95)Te势垒随温度的相互扩散以及其降解,从而将SL的吸收边缘转移到更高的能量,因为为了生产光伏探测器所需的p型材料,通常需要进行温度异位退火。给出了退火样品的红外吸收光谱,TEM和霍尔效应测量结果。设计并制造了AFIR SLs单元素光电导(PC)器件。材料表征和器件测试都建立了HgTe / Hg_(03.05)Cd_(0.95)Te SLs在FIR区域的适用性。

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