飞秒激光加热中的超快变形

D. Tzou, J. Beraun, J. K. Chen
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引用次数: 37

摘要

本文将热电子爆破模型扩展到描述金属薄膜在亚皮秒到皮秒范围内的超快变形。驱动力取决于热电子气体中的温度和温度梯度,而金属晶格在这种高度非平衡状态下保持热不受干扰。确定了表征超快变形的主要参数。采用声子-电子相互作用模型描述电子温度,在动力学运动方程中引入弹性模量的重整化。采用线法求解亚皮秒域超快变形非线性耦合方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrafast Deformation in Femtosecond Laser Heating
The hot-electron blasting model is extended in this work to describe the ultrafast deformation in thin metal films in the sub-picosecond to picosecond domain. The driving force depends on both the temperature and temperature gradient in the hot electron gas, while the metal lattices remain thermally undisturbed in this highly non-equilibrium regime. The dominating parameters characterizing the ultrafast deformation are identified. The phonon-electron interaction model is used to describe the electron temperature, while renormalization of elastic moduli is accommodated in the dynamic equation of motion. Method of lines is used to solve the nonlinearly coupled equations describing ultrafast deformation in the sub-picosecond domain.
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