首页> 外文期刊>Bulletin of Materials Science >Homogenization of zinc distribution in vertical Bridgman grown Cd_(0.96)Zn_(0.04)Te crystals
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Homogenization of zinc distribution in vertical Bridgman grown Cd_(0.96)Zn_(0.04)Te crystals

机译:垂直Bridgman生长Cd_(0.96)Zn_(0.04)Te晶体中锌分布的均质化

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摘要

One of the most pressing issues in the growth of high quality single crystal Cd_(0.96)Zn_(0.04)Te material, is to achieve homogenization of the high axial variation of Zn concentration, caused by the larger than unity segregation coefficient of Zn in CdTe. This is achieved in our crystals (i) by thermal annealing of the CdZnTe crystal, which redistributes the as grown Zn distribution by solid state diffusion of Zn (this solid state diffusion of Zn occurs at three stages (a) during the growth when the solidified crystal is near to the melting point temperature, (b) during the post growth annealing of the crystal at a high temperature and (c) during the cooldown to room temperature) and (ii) by the reduction of Zn segregation during the growth stage by enhanced convective mixing of the melt, through a proper choice of ampoule and furnace dimensions, By adopting suitable growth parameters and sufficient post growth annealing it has been possible to grow Cd_(0.96)Zn_(0.04)Te crystals, which have nearly 75 percent of their fraction within 1 percent Zn concentration variation.
机译:高质量单晶Cd_(0.96)Zn_(0.04)Te材料的生长中最紧迫的问题之一是要使Zn浓度的高轴向变化均匀化,这是由于Zn在CdTe中的偏析系数大于单位。这是在我们的晶体(i)中通过CdZnTe晶体的热退火而实现的,该退火通过Zn的固态扩散来重新分布生长的Zn分布(当固态凝固时,Zn的固态扩散在生长的三个阶段发生(a))晶体接近熔点温度,(b)晶体在高温下的生长后退火期间,(c)在冷却至室温的过程中),(ii)通过减少生长阶段锌的偏析,通过适当选择安瓿和炉子尺寸来增强熔体的对流混合。通过采用合适的生长参数和足够的生长后退火,可以生长Cd_(0.96)Zn_(0.04)Te晶体,其中Cd_(0.96)Zn_(0.04)Te晶体的它们的分数在Zn浓度变化的1%之内。

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