用马尔可夫法研究Zn-Te晶体生长的P-T-X相平衡

T Feltgen , J.H Greenberg , A.N Guskov , M Fiederle , K.W Benz
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引用次数: 15

摘要

气相生长ZnTe晶体的同步加速器形貌表征表明,该系统中可用的数据不足以控制生长参数。首先P-T-X相平衡研究证实了化学计量面X=50 at。% Te完全在ZnTe的单相体积之外。Te边界表现出逆行溶解度。最大非化学计量量为0.0186 at。%在T=1344 K时被发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
P–T–X phase equilibrium studies in Zn–Te for crystal growth by the Markov method

Synchrotron topography characterization of vapor grown ZnTe crystals showed that the available data in this system are not sufficient to control the growth parameters. First PTX phase equilibrium studies confirm that the stoichiometric plane X=50 at.% Te is completely outside of the single-phase volume of ZnTe. The Te boundary exhibits retrograde solubility. The maximum Te non-stoichiometry of 0.0186 at.% was found at T=1344 K.

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