Abstract
The ultrafast electron energy transport is investigated in laser-heated warm dense copper in a high flux regime (2.5±0.7×1013 W/cm2 absorbed). The dynamics of the electron temperature is retrieved from femtosecond time-resolved x-ray absorption near-edge spectroscopy near the Cu L3 edge. A characteristic time of ∼1 ps is observed for the increase in the average temperature in a 100 nm thick sample. Data are well reproduced by two-temperature hydrodynamic simulations, which support energy transport dominated by thermal conduction rather than ballistic electrons.
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CITATION STYLE
Grolleau, A., Dorchies, F., Jourdain, N., Ta Phuoc, K., Gautier, J., Mahieu, B., … Lecherbourg, L. (2021). Femtosecond Resolution of the Nonballistic Electron Energy Transport in Warm Dense Copper. Physical Review Letters, 127(27). https://doi.org/10.1103/PhysRevLett.127.275901
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