Effect of non-equilibrium term in two-particle correlation function on electron-phonon collision integrals
Abstract
The derivation of kinetic equation for one-particle distribution function from BBGKY chain leads to the collision integral expressed in terms of the two-particle correlation function. The latter is in turn expressed by using Boltzmann's Stosszahlansatz that implies the neglect of initial one-time correlation function which is non-diagonal in the momentum space. However, it has been established in non-equilibrium case that pair collisions generate the non-diagonal two-particle correlations that give the essential contribution to the current fluctuations of hot electrons. These correlations have been shown giving also a contribution to the collision integrals, i.e., to kinetic properties of nonequilibrium gas. The expression for electron energy loss rate via phonons is re-derived in detail from this point of view. The order of value of the new term in in the cases of acoustic- and optical-phonon scattering is evaluated in the electron temperature approximation using the experimental study of hot-electron energy relaxation time in at helium temperatures.
Cite
@article{arxiv.cond-mat/0509333,
title = {Effect of non-equilibrium term in two-particle correlation function on electron-phonon collision integrals},
author = {A. Ya. Shul'man},
journal= {arXiv preprint arXiv:cond-mat/0509333},
year = {2009}
}
Comments
7 pages. Reported on the 4-th International Conference on Unsolved Problems of Noise and Fluctuations in Physics, Biology & High Technology (UPoN-4). Gallipoli (Lecce), Italy, June 6 - 10, 2005. To be published in the AIP Series of Conference Proceedings, 2005