Strain-dependence of Te interstitial diffusion in CdTe.

IF 2.3 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Sameer Hamadna, Jacques G Amar
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引用次数: 0

Abstract

While the dominant defects which control non-radiative recombination and long-range interstitial diffusion in CdTe correspond to Cd vacancies and Te anti-sites, the short-range diffusion of Te and Se interstitials between these defects is also of interest, since they both play a role in defect passivation. In addition, since CdTe thin films are typically polycrystalline and may also involve interfaces with materials with different lattice constants, the effects of strain are also of interest. Here we present the results of molecular dynamics (MD) simulations of Te interstitial diffusion in zincblende CdTe for values of the triaxial strain ranging from -2% (compressive) strain to +2.8% (tensile) strain. By carrying out MD simulations of Te interstitial diffusion over a range of temperatures, and then carrying out Arrhenius fits, we have determined the effective activation barrierEaand prefactorD0for each value of the global strain. We find that bothEaandD0exhibit non-monotonic behavior, increasing with both compressive and tensile strain. We also present an analysis of the key diffusion pathways for 3 different values of the strain which explains the non-monotonic strain dependence obtained in our simulations. Our results also indicate that in each case, the diffusion of interstitial Te involves a variety of concerted events with a wide range of activation barriers.

碲化镉中碲间二溶的应变依赖性。
虽然碲化镉中控制非辐射重组和长程间隙扩散的主要缺陷是镉空位和碲反位点,但这些缺陷之间的碲和硒间隙的短程扩散也令人感兴趣,因为它们都在缺陷钝化中发挥作用。此外,由于碲化镉薄膜通常是多晶体,还可能涉及具有不同晶格常数的材料界面,因此应变的影响也值得关注。在此,我们介绍了分子动力学(MD)模拟碲化镉在黝帘石碲化镉中的间隙扩散的结果,模拟的三轴应变值从-2%(压缩)应变到+2.8%(拉伸)应变不等。通过在一定温度范围内对碲间质扩散进行 MD 模拟,然后进行阿伦尼乌斯拟合,我们确定了每个全局应变值的有效活化势垒 E_a 和前因子 D_0。我们发现 E_a 和 D_0 都表现出非单调行为,随着压缩和拉伸应变的增加而增加。我们还对 3 种不同应变值的关键扩散途径进行了分析,从而解释了模拟中获得的非单调应变依赖性。我们的结果还表明,在每种情况下,间隙态 Te 的扩散都涉及各种协同事件,其活化势垒范围很广。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physics: Condensed Matter
Journal of Physics: Condensed Matter 物理-物理:凝聚态物理
CiteScore
5.30
自引率
7.40%
发文量
1288
审稿时长
2.1 months
期刊介绍: Journal of Physics: Condensed Matter covers the whole of condensed matter physics including soft condensed matter and nanostructures. Papers may report experimental, theoretical and simulation studies. Note that papers must contain fundamental condensed matter science: papers reporting methods of materials preparation or properties of materials without novel condensed matter content will not be accepted.
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