首页> 外文会议>Seventh International Conference on Computational Modelling of Free and Moving Boundary Problems; 2003; Santa Fe, USA >Computational solution of a two-phase moving boundary problem with two moving interfaces in pulsed laser processing of semiconductors
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Computational solution of a two-phase moving boundary problem with two moving interfaces in pulsed laser processing of semiconductors

机译:半导体脉冲激光加工中具有两个运动界面的两相运动边界问题的计算解

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摘要

A model of melting, evaporation and solidification of a binary alloy due to pulsed laser irradiation is formulated using the mass and internal energy balances in the liquid and solid phases, the vapor being assumed to be removed from the sample surface into vacuum instantaneously. The interface between the solid and liquid phases is modeled as a discontinuity surface where, in addition to balance conditions, an interface response function is formulated on the basis of the Wilson-Frenkel theory so that both melting and solidification are treated as nonequilibrium processes. The liquid/vapor interface is modeled in a similar way, with an interface response function defined on the basis of the kinetic theory of gases. The numerical solution of the mathematical model is performed using the Galerkin finite element method combined with a front-fixing technique. The practical applicability of the computational model is demonstrated on the numerical simulation of phase change processes in CdZnTe pseudobinary system induced by NdrYAG laser.
机译:利用液相和固相中的质量和内部能量平衡,建立了由于脉冲激光辐照而导致的二元合金的熔化,蒸发和凝固模型,假定蒸汽会立即从样品表面移至真空中。固相和液相之间的界面被建模为不连续表面,除了平衡条件外,还基于Wilson-Frenkel理论制定了界面响应函数,以便将熔融和凝固均视为非平衡过程。液体/蒸气界面以类似的方式建模,具有基于气体动力学理论定义的界面响应函数。数学模型的数值解是使用Galerkin有限元方法结合前固定技术进行的。 NdrYAG激光诱导的CdZnTe伪二元体系相变过程的数值模拟证明了该计算模型的实用性。

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