Back to Search Start Over

Electron and lattice dynamics of transition metal thin films observed by ultrafast electron diffraction and transient optical measurements

Authors :
Masaki Nakano
Takahiro Shimojima
A. Nakamura
Yoshihiro Iwasa
Kyoko Ishizaka
Source :
Structural Dynamics, Structural Dynamics, Vol 3, Iss 6, Pp 064501-064501-10 (2016)
Publication Year :
2016

Abstract

We report the ultrafast dynamics of electrons and lattice in transition metal thin films (Au, Cu, and Mo) investigated by a combination of ultrafast electron diffraction (UED) and pump-probe optical methods. For a single-crystalline Au thin film, we observe the suppression of the diffraction intensity occuring in 10 ps, which direcly reflects the lattice thermalization via the electron-phonon interaction. By using the two-temperature model, the electron-phonon coupling constant (g) and the electron and lattice temperatures (Te, Tl) are evaluated from UED, with which we simulate the transient optical transmittance. The simulation well agrees with the experimentally obtained transmittance data, except for the slight deviations at the initial photoexcitation and the relaxed quasi-equilibrium state. We also present the results similarly obtained for polycrystalline Au, Cu, and Mo thin films and demonstrate the electron and lattice dynamics occurring in metals with different electron-phonon coupling strengths.

Details

ISSN :
23297778
Volume :
3
Issue :
6
Database :
OpenAIRE
Journal :
Structural dynamics (Melville, N.Y.)
Accession number :
edsair.doi.dedup.....f8d14dce2eb5ad106f1a245aa2f9b1c0