Publication | Closed Access
The role of electron–phonon coupling in ultrafast laser heating
158
Citations
29
References
2005
Year
EngineeringLaser ScienceLaser ApplicationsLaser AblationLaser MaterialHigh-power LasersAblation DepthThermodynamicsUltrafast LasersMaterials SciencePhysicsUltrafast Laser PhysicsLaser Processing TechnologyThermal PhysicsUltrafast Laser HeatingHigh Temperature MaterialsUltrafast LaserApplied PhysicsCondensed Matter PhysicsPhononUltrafast OpticsThermal Engineering
Most of the ultrafast laser heating analysis to date has been accomplished with a constant electron–phonon coupling factor (G). Due to the significant changes in the electron and lattice temperature caused by high-power laser heating, G could be temperature dependent. In this article a phenomenological temperature-dependent G is introduced to simulate ultrafast laser heating in metals. The electron temperature and the ablation depth computed with the temperature-dependent G compare well with experimental data.
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