December 2015

Journal

Adequacy of damped dynamics to represent the electron-phonon interaction in solids

By:
Caro, Alfredo; Correa, A. A.; Tamm, A. A.; Samolyuk, German D; Stocks, George M
Journal Name:
Physical Review B
Page Number:
144309
Volume:
92
Issue Number:
14
Publication Date:
December 2015
View DOI Listing:
https://doi.org/10.1103/PhysRevB.92.144309

Abstract

Time-dependent density functional theory and Ehrenfest dynamics are used to calculate the electronic excitations produced by a moving Ni ion in a Ni crystal in the case of energetic MeV range (electronic stopping power regime), as well as thermal energy meV range (electron-phonon interaction regime). Results at high energy compare well to experimental databases of stopping power, and at low energy the electron-phonon interaction strength determined in this way is very similar to the linear response calculation and experimental measurements. This approach to electron-phonon interaction as an electronic stopping process provides the basis for a unified framework to perform classical molecular dynamics of ion-solid interaction with ab initio type nonadiabatic terms in a wide range of energies.


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