Article ID Journal Published Year Pages File Type
1593341 Solid State Communications 2012 4 Pages PDF
Abstract

The electron temperature dependences of the electron–phonon coupling factor and electron heat capacity based on the electron density of states are investigated for precious metal Au under femtosecond laser irradiation. The thermal excitation of d band electrons is found to result in large deviations from the commonly used approximations of linear temperature dependence of the electron heat capacity, and the constant electron–phonon coupling factor. Results of the simulations performed with the two-temperature model demonstrate that the electron–phonon relaxation time becomes short for high fluence laser for Au. The satisfactory agreement between our numerical results and experimental data of threshold fluence indicates that the electron temperature dependence of the thermophysical parameters accounting for the thermal excitation of d band electrons should not be neglected under the condition that electron temperature is higher than 104 K.

► The electron density of states (DOS) and the energy band structure will change with the temperature. ► The electron–phonon coupling factor is large for high electron temperature due to the DOS effects. ► The electron heat capacity has a large deviation from the commonly used approximations. ► There is a satisfactory agreement between our numerical results and experimental data.

Related Topics
Physical Sciences and Engineering Materials Science Materials Science (General)
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