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Molecular dynamics simulation of radiation damage in CaCd6 quasicrystal cubic approximant up to 10 keV

机译:CaCd6准晶体立方近似至10 keV时辐射损伤的分子动力学模拟

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摘要

Due to the peculiar nature of the atomic order in quasicrystals, examining phase transitions in this class of materials is of particular interest. Energetic particle irradiation can provide a way to modify the structure locally in a quasicrystal. To examine irradiation-induced phase transitions in quasicrystals on the atomic scale, we have carried out molecular dynamics simulations of collision cascades in CaCd6 quasicrystal cubic approximant with energies up to 10 keV at 0 and 300 K. The results show that the threshold energies depend surprisingly strongly on the local coordination environments. The energy dependence of stable defect formation exhibits a power-law dependence on cascade energy, and surviving defects are dominated by Cd interstitials and vacancies. Only a modest effect of temperature is observed on defect survival, while irradiation temperature increases lead to a slight increase in the average size of both vacancy clusters and interstitial clusters.
机译:由于准晶体中原子序的特殊性质,对这类材料中的相变进行研究尤为重要。高能粒子辐照可提供一种方法来局部修饰准晶体中的结构。为了在原子尺度上检查准晶体中辐照引起的相变,我们在0和300 K下进行了CaCd6准晶体立方近似中能量高达10 keV的碰撞级联的分子动力学模拟。结果表明,阈值能量出人意料地取决于强烈关注本地协调环境。稳定缺陷形成的能量依赖性表现出对级联能量的幂律依赖性,剩余的缺陷主要由Cd间隙和空位决定。仅观察到温度对缺陷存活率的适度影响,而辐照温度升高导致空位簇和间隙簇的平均尺寸略有增加。

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