Non-Thermal Melting of Tungsten Under Intense Electronic Excitations

X. Ye, Zhihai He, Fei Gao, B. Pan
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引用次数: 5

Abstract

Abstract Non-thermal effect caused by ultrafast lasers and swift ions in materials are very intriguing, which is of both scientific interest and technological importance. However, the underlying physics of non-thermal effect on ultrafast process remains unclear and the proposed mechanisms have been controversial. Based on the perturbation approximation under tight-binding theory, the non-thermal effect on tungsten (W) are extensively studied. We demonstrate that the non-thermal effect stemmed from the intense electronic excitations induce dramatic decrease in the melting point of W crystal, as well as non-thermal melting inside the W slab. Our analysis shows that the non-thermal forces are essentially responsible for the drop of melting point of the bulk system. Remarkably, the non-thermal effect combined with surface effect on a W film enhance the ordering of the direction of atomic motion near the surface, preventing melting near the surface area, but leading to non-thermal melting in the interior area of the film. Our work also exhibits a unified relationship between the non-thermal melting and the interatomic forces. This relationship is universal in metals and semiconductors irradiated by ultrafast lasers or swift ions, and has been well established long before.
钨在强电子激励下的非热熔化
摘要超快激光和快离子在材料中引起的非热效应是一个非常有趣的问题,具有重要的科学意义和技术意义。然而,超快过程的非热效应的基本物理机制尚不清楚,提出的机制一直存在争议。基于紧束缚理论下的微扰近似,广泛研究了钨的非热效应。结果表明,由强电子激发引起的非热效应导致W晶体熔点急剧下降,并导致W板坯内部的非热熔。分析表明,非热作用力是导致体系熔点下降的主要原因。值得注意的是,W膜上的非热效应和表面效应的结合增强了表面附近原子运动方向的有序性,阻止了表面附近的熔化,但导致薄膜内部区域的非热熔。我们的工作还显示了非热熔化与原子间相互作用之间的统一关系。这种关系在被超快激光或快速离子照射的金属和半导体中是普遍存在的,并且在很久以前就已经得到了很好的证实。
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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