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以Cd_(1-y)Zn_y合金作退火源,对采用改进的垂直布里奇曼法(MVB)生长的In掺杂的Cd_(0.9)Zn_(0.1)Te晶片进行退火改性.结果表明:与退火前相比,退火后晶片的成分均匀性提高,Cd、Zn和Te三种元素的含量更接近理想的化学计量比,平均红外透过率由12%提高到59%,电阻率从3.5×10~6 Ω·cm提高到5.7×10~9 Ω·cm,且在PL谱中出现了代表晶体质量的(D~0,X)发光峰.在合适的条件下对低阻值In掺杂的CdZnTe晶体进行退火改性可较好的提高晶体的性能.

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