@inproceedings{92a48d09757247089fc606e03ec3e1e0,
title = "Parabolic and hyperbolic two-temperature models of microscopic heat transfer. Comparison of numerical solutions",
abstract = "The paper deals with the microscale heat transfer problems. In particular, the ultrafast laser heating of thin metal film is considered. The problem is described by so-called two-temperature models consisting of two equations concerning the electron and lattice temperatures. Energy equations are supplemented by two additional ones determining the dependencies between electrons (phonons) heat flux and electrons (phonons) temperature gradient. According to the form of above dependencies one obtains the parabolic or hyperbolic heat transfer models discussed here. The problems have been solved using the finite difference method. In the final part of the paper the results of computations and the comparison of solutions obtained are presented.",
keywords = "Laser pulse, Microscale heat transfer, Numerical analysis, Two-temperature models",
author = "Ewa Majchrzak",
year = "2012",
doi = "10.4028/www.scientific.net/MSF.706-709.1454",
language = "English",
isbn = "9783037853030",
series = "Materials Science Forum",
publisher = "Trans Tech Publications Ltd.",
pages = "1454--1459",
booktitle = "THERMEC 2011",
address = "Switzerland",
note = "7th International Conference on Processing and Manufacturing of Advanced Materials, THERMEC'2011 ; Conference date: 01-08-2011 Through 05-08-2011",
}