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Photothermal excitation processes with refined multi dual phase-lags theory for semiconductor elastic medium
Faculty
Science
Year:
2020
Type of Publication:
ZU Hosted
Pages:
9
Authors:
Khaled Lotfy Mohamed Azab
Staff Zu Site
Abstract In Staff Site
Journal:
Alexandria Engineering Journal ُEl sevier
Volume:
Keywords :
Photothermal excitation processes with refined multi dual
Abstract:
The aim of this investigation is to study a refined multi-phase-lags generalized thermoelasticity theory and coupled plasma theory for a semi-infinite semiconductor elastic medium. The model is studied in context of the Photothermal transport process for isoropic homogenous two dimension medium. The governing equations describe the interaction between elastic-plasma-thermal waves. The normal mode technique is used to get the exact solutions analytically of main physical quantities under investigation. The thermal-plasma and mechanical loads are applied at the free surface of semiconductor medium to obtain the complete solution of the temperature, displacement, stresses and carrier density distributions. Some special cases have been obtained. Results will be displayed graphically and discussed. Comparisons are made between the different theories in thermoelasticity.
Author Related Publications
Khaled Lotfy Mohamed Azab, "Analytical solution of fractional order heat equation under the effects of variable thermal conductivity during photothermal excitation of spherical cavity of semiconductor medium", © 2019 Informa UK Limited, trading as Taylor & Francis Group, 2019
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Khaled Lotfy Mohamed Azab, "Thermal Ramp Type of Photo-Thermal Excitation in Hall Current and Variable Thermal Conductivity of Semiconductor Elastic Material", # Springer Nature B.V. 2020, 2020
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Khaled Lotfy Mohamed Azab, "Normal Mode Method for Two-Temperature Generalized Thermoelasticity under Thermal Shock Problem", Taylor & Francis, 2014
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Khaled Lotfy Mohamed Azab, "The effect of a magnetic field on a 2D problem of fibre-reinforced thermoelasticity rotation under three theories,", Chinese, 2014
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Khaled Lotfy Mohamed Azab, "Mode-I crack in a two-dimensional fibre-reinforced generalized thermoelastic problem,", Chinese, 2014
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