English

Temperature and Frequency Dependent Mean Free Paths of Renormalized Phonons in Nonlinear Lattices

Statistical Mechanics 2015-10-13 v1

Abstract

In the regime of strong nonlinearity, the validity of conventional perturbation based phonon transport theories is questionable. In particular, the renormalized phonons instead of phonons are responsible for heat transport in nonlinear lattices. In this work, we directly study the temperature and frequency dependent Mean Free Path (MFP) of renormalized phonons with the newly developed numerical tuning fork method. The typical 1D nonlinear lattices such as Fermi-Pasta-Ulam β\beta (FPU-β\beta) lattice and ϕ4\phi^4 lattice are investigated in details. It is found that the MFPs are inversely proportional to the frequencies of renormalized phonons rather than the square of phonon frequencies predicted by existing phonon scattering theory.

Keywords

Cite

@article{arxiv.1510.03190,
  title  = {Temperature and Frequency Dependent Mean Free Paths of Renormalized Phonons in Nonlinear Lattices},
  author = {Nianbei Li and Junjie Liu and Changqin Wu and Baowen Li},
  journal= {arXiv preprint arXiv:1510.03190},
  year   = {2015}
}

Comments

5 pages, 5 figures