ZnSe中I/sub /sup /激子发射的起源

E. Wheeler, J. L. Boone
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引用次数: 0

摘要

采用核嬗变法研究了铜掺杂对ZnSe的影响。本研究报告了三个实验观察结果。第一种方法是用热中子辐照生长的ZnSe,在热退火后形成Cu/亚Zn/中心。结果表明,孤立的Cu/sub Zn/参与了ZnSe的铜红和铜绿发射,而不参与I/sub 1//sup d/激子发射。接下来是在富锌气氛中热退火的ZnSe晶圆的退火实验。经退火后,晶圆的I/sub /sup /发射明显降低。最后,我们报道了由元素锌和硒生长的ZnSe同外延层的观察结果。在这些实验中,我们已经看到,通过在富锌的大气中生长这些层,I/sub //sup /可以大大减少,通常是消除。这三个观测结果都表明,I/sub - 1//sup - d/与V/sub - Zn/中心有关,而与Cu/sub - Zn/中心无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The origin of the I/sub 1//sup d/ excitonic emission in ZnSe
An investigation employing nuclear transmutation to probe the effects of copper doping in ZnSe is presented. Three experimental observations are reported in this investigation. With the first, as-grown ZnSe is irradiated with thermal neutrons which results, after thermal annealing, in the incorporation of Cu/sub Zn/ centers. Results are consistent with isolated Cu/sub Zn/ being involved in the copper-red and copper-green emissions in ZnSe but not in the I/sub 1//sup d/ excitonic emission. Next are annealing experiments of as-grown wafers of ZnSe which are thermally annealed in a zinc-rich atmosphere. After annealing, the wafers show a remarkable reduction in the I/sub 1//sup d/ emission. Finally, we report observations of homoepitaxial layers of ZnSe grown from elemental zinc and selenium. In these experiments, we have seen that the I/sub 1//sup d/ can be greatly reduced, often eliminated, by growing the layers in a zinc-rich atmosphere. All three observations are consistent with the I/sub 1//sup d/ emission being associated with V/sub Zn/ but not with Cu/sub Zn/ centers,.
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