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Two-Temperature Photothermal Interactions in a Semiconducting Material with a 3D Spherical Cavity

机译:具有3D球形腔的半导体材料中的两温光热相互作用

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In this paper, a two-temperatures photothermoelastic interactions in an infinite semiconductor medium with a spherical cavity were studied using mathematical methods. The cavity internal surface is traction free and the carrier density is photogenerated by boundary heat flux with an exponentially decaying pulse. Laplace transform techniques are used to obtain the exact solution of the problem in the transformed domain by the eigenvalue approach and the inversion of Laplace transforms has been carried numerically. Numerical computations have been also performed for a silicon-like semiconductor material.
机译:在本文中,使用数学方法研究了具有球形空腔的无限半导体介质中的两个温度的光热弹性相互作用。腔内表面无牵引力,载流子密度通过边界热通量以指数衰减的脉冲光生。使用拉普拉斯变换技术通过特征值方法在变换域中获得问题的精确解,并且已经对拉普拉斯变换进行了数值反演。还对类硅半导体材料进行了数值计算。

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