带有非局部半导体介质湿度扩散性的旋转磁-光-热弹性效应

M. Raddadi, A. Mahdy, A. El-Bary, Khaled Lotfy, M. Allan
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摘要

本研究的重点是研究一维弹性非局部半导体介质的变形。目的是了解磁场和水分扩散如何影响这种变形。研究旨在分析旋转磁场中等离子体和水分扩散过程以及热弹性波之间的联系。研究在考虑湿度扩散影响的同时,还考察了光热弹性的传输过程。为了推导光热弹性介质的控制方程,使用了拉普拉斯变换技术。这些方程包括载流子密度、弹性波、水分传输、热传导和构成关系。计算拉普拉斯域中的基本物理参数,如机械应力、热条件和等离子体边界条件。采用数值技术对拉普拉斯变换进行反演,并获得所研究的各种物理域的完整时域解。分析考虑了参考湿度、非位置性、磁场和旋转场。通过图形分析,考虑了外力对位移、水分浓度、载流子密度、外力产生的应力和温度分布的影响。
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A rotating magneto-photothermoelastic effect with moisture diffusivity of nonlocal semiconductor medium
This study focuses on investigating the deformation of a one-dimensional elastic nonlocal semiconductor medium. The aim is to understand how the magnetic field and moisture diffusivity affect this deformation. The research aims to analyze the connection between plasma and moisture diffusivity processes in a rotational field, as well as thermo-elastic waves. The study examines the transport process of photo-thermoelasticity while considering the influence of moisture diffusivity. To derive the governing equations of the photo-thermo-elastic medium, Laplace’s transformation technique is used. These equations encompass the carrier density, elastic waves, moisture transport, heat conduction, and constitutive relationships. The fundamental physical parameters in the Laplace domain, such as mechanical stresses, thermal conditions, and plasma boundary conditions, are calculated. Numerical techniques are employed to invert the Laplace transform and obtain complete time-domain solutions for the various physical domains under investigation. The analysis takes into account reference moisture, nonlocality, magnetic field and rotation field. The effects of applied forces on displacement, moisture concentration, carrier density, stress resulting from forces, and temperature distribution are considered through graphical analysis.
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