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A novel model for photothermal excitation of variable thermal conductivity semiconductor elastic medium subjected to mechanical ramp type with two-temperature theory and magnetic field

机译:机械温升型和双温理论的可变导热系数半导体弹性介质光热激发新模型

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This article focuses on studying the dependence of the thermal conductivity of a semiconducting medium on temperature in context of photothermal transport process and variable thermal conductivity, chosen to be linear function in temperature. The effect of the initial magnetic field is introduced in the problem governing equations with the two-temperature theory. The complete solution in one dimension is obtained using Laplace transform technique. The thermal heating ramp type and mechanical load throughout the elastic-photothermal excitation are considered in the problem boundary conditions. Some physical fields are obtained by using numerical inversion of the Laplace transform and Riemann-sum approximation method. The thermo-dynamical temperature, conductive temperature, displacement, strain, normal stress and carrier density are discussed and shown graphically with some comparisons.
机译:本文着重研究在光热传输过程和可变热导率(温度是线性函数)的背景下半导体介质的热导率对温度的依赖性。利用双温度理论将初始磁场的影响引入到问题控制方程中。使用Laplace变换技术可以获得一维的完整解。在问题边界条件下考虑了整个弹性-光热激发过程中的加热坡道类型和机械负荷。通过使用Laplace变换的数值反演和Riemann-sum逼近方法可以获得一些物理场。讨论了热力学温度,传导温度,位移,应变,法向应力和载流子密度,并以图形方式显示了一些比较。

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    《Scientific reports.》 |2019年第1期|共19页
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    Kh. Lotfy;

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