Scinovex
articleTop 1% cited

Electron-phonon coupling and electron heat capacity of metals under conditions of strong electron-phonon nonequilibrium

Physical Review B · 2008 · Vol. 77(7)
Zhibin LinLeonid V. ZhigileiV. Celli

Abstract

The dependence of the strength of the electron-phonon coupling and the electron heat capacity on the electron temperature is investigated for eight representative metals, Al, Cu, Ag, Au, Ni, Pt, W, and Ti, for the conditions of strong electron-phonon nonequilibrium. These conditions are characteristic of metal targets subjected to energetic ion bombardment or short-pulse laser irradiation. Computational analysis based on first-principles electronic structure calculations of the electron density of states predicts large deviations (up to an order of magnitude) from the commonly used approximations of linear temperature dependence of the electron heat capacity and a constant electron-phonon coupling. These thermophysical properties are found to be very sensitive to details of the electronic structure of the material. The strength of the electron-phonon coupling can either increase (Al, Au, Ag, Cu, and W), decrease (Ni and Pt), or exhibit nonmonotonic changes (Ti) with increasing electron temperature. The electron heat capacity can exhibit either positive (Au, Ag, Cu, and W) or negative (Ni and Pt) deviations from the linear temperature dependence. The large variations of the thermophysical properties, revealed in this work for the range of electron temperatures typically realized in femtosecond laser material processing applications, have important implications for quantitative computational analysis of ultrafast processes associated with laser interaction with metals.

Ion-surface interactions and analysisLaser Material Processing TechniquesLaser-induced spectroscopy and plasmaMaterials scienceElectronHeat capacityCondensed matter physicsElectron temperaturePhononNon-equilibrium thermodynamicsCoupling (piping)FemtosecondAtomic physics
Citations
1,391
FWCI
57.88
field-weighted impact
References
62
Percentile
100%
vs. same field & year
Citations per year
References
From ultrasoft pseudopotentials to the projector augmented-wave method
Physical review. B, Condensed matter · 1999 · 81,446 citations
Special points for Brillouin-zone integrations
Physical review. B, Solid state · 1976 · 68,828 citations
<i>Electrons and Phonons</i>
Physics Today · 1961 · 3,378 citations
Transition Temperature of Strong-Coupled Superconductors
Physical Review · 1968 · 5,683 citations
<i>Ab initio</i>molecular dynamics for liquid metals
Physical review. B, Condensed matter · 1993 · 43,952 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.