Fractional ultrafast laser-induced magneto-thermoelastic behavior in perfect conducting metal films
Magdy A. Ezzat,
Ahmed S. El-Karamany,
A.A. El-Bary and
Mohsen A. Fayik
Journal of Electromagnetic Waves and Applications, 2014, vol. 28, issue 1, 64-82
Abstract:
An ultrafast fractional magneto-thermoelasticity model utilizing the modified hyperbolic heat conduction model with fractional order is formulated to describe the thermoelastic behavior of a thin perfect conducting metal film irradiated by a femtosecond laser pulse. Some theorems of generalized thermoelasticity follow as limit cases. The temporal profile of the ultrafast laser was regarded as being non-Gaussian. An analytical–numerical technique based on the Laplace transform was used to solve the governing equations and the time histories of the temperature, displacement, stress, strain, and induced electric/magnetic fields in a gold film were analyzed. Some comparisons have been shown in figures to estimate the effects of some parameters on all the studied fields.
Date: 2014
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Persistent link: https://EconPapers.repec.org/RePEc:taf:tewaxx:v:28:y:2014:i:1:p:64-82
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DOI: 10.1080/09205071.2013.855616
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