碲锌镉晶体Zn组分的光致发光实用化研究  被引量:7

Study on the Zn composition test in cadmium zinc telluride crystal by photoluminescence

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作  者:许秀娟[1] 折伟林[1] 周翠[1] 沈宝玉[1] 巩锋[1] 周立庆[1] 

机构地区:[1]华北光电技术研究所,北京100015

出  处:《激光与红外》2013年第1期54-57,共4页Laser & Infrared

摘  要:利用激光显微光致发光光谱仪测试了碲锌镉晶片的室温显微光致发光谱,对测得的光致发光谱进行拟合得到碲锌镉材料带隙的Eg值,根据实验总结出的Eg与Zn组分的室温计算公式,结合自主开发的Zn组分计算程序得到碲锌镉晶片上的Zn组分。所得的Zn组分结果用X射线双晶衍射进行验证,结果显示,室温下显微光致发光测得的Zn组分是相对准确可信的,可作为大量常规工艺测定Zn组分的有效工具,并且获得的Zn组分可成为外延碲镉汞薄膜时筛选匹配衬底的重要依据,同时还为研究和优化碲锌镉晶体生长工艺提供重要帮助。Microphotoluminescence spectra of cadmium zinc telluride crystal at room temperature was tested by laser excited microphotolumineseence spectroscopy. The Eg value of cadmium zinc telluride material was calculated by fit ting the microphotoluminescence spectra from the material band gap. According to the relationship between Eg and Zn composition derived from experiment data, the Zn composition was obtained with a selfdeveloped program. The results was validated by Xray double crystal diffraction. Experiment results prove that the Zn composition results by micro photoluminescence is accurate and authentic. Therefore the room temperature microphotoluminescence is an important test tool to measure the Zn composition in large scale fabrication. The Zn composition is an important basis for selec ting the matching substrates in epitaxial HgCdTe film. That is helpful for studying and optimizing the growth of cadmi um zinc telluride crystal.

关 键 词:碲锌镉 CDZNTE Zn组分 光致发光 PL X射线双晶衍射 

分 类 号:TN213[电子电信—物理电子学]

 

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