Direct measurement of non-equilibrium phonon occupations in femtosecond laser heated Au films
Chase, T. · Trigo, M. · Reid, A. H. · Li, R. · Vecchione, T. · Shen, X. · Weatherby, S. · Coffee, R. · Hartmann, N. · Reis, D. A. · Wang, X. J. · Dürr, H. A.
Original · EN
We use ultrafast electron diffraction to detect the temporal evolution of phonon populations in femtosecond laser-excited ultrathin single-crystalline gold films. From the time-dependence of the Debye-Waller factor we extract a 4.7 ps time-constant for the increase in mean-square atomic displacements. We show from the increase of the diffuse scattering intensity that the population of phonon modes near the X and K points in the Au fcc Brillouin zone grows with timescales of 2.3 and 2.9 ps, respectively, faster than the Debye-Waller average. We find that thermalization continues within the initially non-equilibrium phonon distribution after 10 ps. The observed momentum dependent timescale of phonon populations is in contrast to what is usually predicted in a two-temperature model.
English translation
This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.