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A Journal of Russian Academy of Sciences
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IssuesArchive of Issues2025-7pp.5772-5783

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G.A. Yahya, F.S. Bayones, and A.M. Abd-Alla, "Influence of Rotation on Hyperbolic Two-Temperature Photothermal Wave Propagation in Thermoelastic Semiconductors Medium," Mech. Solids. 60 (7), 5772-5783 (2025)
Year 2025 Volume 60 Number 7 Pages 5772-5783
DOI 10.1134/S0025654425603519
Title Influence of Rotation on Hyperbolic Two-Temperature Photothermal Wave Propagation in Thermoelastic Semiconductors Medium
Author(s) G.A. Yahya (Mathematics Department, Faculty of Science, Aswan University, Aswan, Egypt, gamal102@yahoo.com)
F.S. Bayones (Department of Mathematics, College of Scienc, Taif Universit, Taif, 21944 Saudi Arabia, f.bayones@tu.edu.sa)
A.M. Abd-Alla (Mathematics Department, Faculty of Science, Sohag University, Sohag, Egypt, mohmrr@yahoo.com)
Abstract The article deals with the aims is to investigate the effects of rotational dynamics on a photothermoelastic semiconductor within the framework of hyperbolic two-temperature theory. The exploration focuses on the interaction between plasma and thermoelastic waves under this theory, positing the medium as isotropic and homogeneous in nature. The analytical expressions of displacement, stresses and temperature field are obtained by Laplace transform method. The numerical values of the expressions are evaluated using MATHEMATICA. These solutions are obtained through a numerical approach that utilizes the inverse Laplace transform, demonstrating the significance and effectiveness of the findings. Comparative analysis highlights the impact of rotational dynamics and magnetic fields, juxtaposed against scenarios absent these influences and against findings from other studies. The graphical results are presented to shown the effect of different rotation. The comparison of our results for the accuracy of physical quantities with previous research work is carried out graphically that indicates to the strong impact of the external parameters in photothermaol phenomenon.
Keywords thermoelasticity, thermal stress, semiconductor material, two-temperature, laplace transform, rotational dynamics
Received 28 June 2025Revised 23 July 2025Accepted 24 July 2025
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