Melting of gold by ultrashort laser pulses: Advanced two-temperature modeling and comparison with surface damage experiments

Fuente: arXiv
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Autori principali: Lizunov, Sergey A., Bulgakov, Alexander V., Campbell, Eleanor E. B., Bulgakova, Nadezhda M.
Natura: Preprint
Pubblicazione: 2022
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author Lizunov, Sergey A.
Bulgakov, Alexander V.
Campbell, Eleanor E. B.
Bulgakova, Nadezhda M.
author_facet Lizunov, Sergey A.
Bulgakov, Alexander V.
Campbell, Eleanor E. B.
Bulgakova, Nadezhda M.
contents The ultrafast laser-induced solid-liquid phase transition in metals is still not clearly understood and its accurate quantitative description remains a challenge. Here we systematically investigated, both experimentally and theoretically, the melting of gold by single femto- and picosecond near-infrared laser pulses. Two laser systems with wavelengths of 800 and 1030 nm and pulse durations ranging from 124 fs to 7 ps were used and the damage and ablation thresholds were determined for each irradiation condition. The theoretical analysis was based on two-temperature modeling. Different expressions for the electron-lattice coupling rate and contribution of ballistic electrons were examined. In addition, the number of free electrons involved in the optical response is suggested to be dependent on the laser intensity and the influence of the fraction of involved electrons on the damage threshold was investigated. Only one combination of modelling parameters was able to describe consistently all the measured damage thresholds. Physical arguments are presented to explain the modeling results.
format Preprint
id arxiv_https___arxiv_org_abs_2205_00552
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Melting of gold by ultrashort laser pulses: Advanced two-temperature modeling and comparison with surface damage experiments
Lizunov, Sergey A.
Bulgakov, Alexander V.
Campbell, Eleanor E. B.
Bulgakova, Nadezhda M.
Materials Science
The ultrafast laser-induced solid-liquid phase transition in metals is still not clearly understood and its accurate quantitative description remains a challenge. Here we systematically investigated, both experimentally and theoretically, the melting of gold by single femto- and picosecond near-infrared laser pulses. Two laser systems with wavelengths of 800 and 1030 nm and pulse durations ranging from 124 fs to 7 ps were used and the damage and ablation thresholds were determined for each irradiation condition. The theoretical analysis was based on two-temperature modeling. Different expressions for the electron-lattice coupling rate and contribution of ballistic electrons were examined. In addition, the number of free electrons involved in the optical response is suggested to be dependent on the laser intensity and the influence of the fraction of involved electrons on the damage threshold was investigated. Only one combination of modelling parameters was able to describe consistently all the measured damage thresholds. Physical arguments are presented to explain the modeling results.
title Melting of gold by ultrashort laser pulses: Advanced two-temperature modeling and comparison with surface damage experiments
topic Materials Science
url https://arxiv.org/abs/2205.00552