Heat Transport in Spin Chains with Weak Spin-Phonon Coupling
Abstract
The heat transport in a system of large- Heisenberg spin chains, describing closely SrCuO and SrCuO cuprates, is studied theoretically at by considering interactions of the bosonized spin excitations with optical phonons and defects. Treating rigorously the multi-boson processes, we derive a microscopic spin-phonon scattering rate that adheres to an intuitive picture of phonons acting as thermally populated defects for the fast spin excitations. The mean-free path of the latter exhibits a distinctive -dependence reflecting a critical nature of spin chains and gives a close description of experiments. By the naturalness criterion of realistically small spin-phonon interaction, our approach stands out from previous considerations that require large coupling constants to explain the data and thus imply a spin-Peierls transition, absent in real materials.
Cite
@article{arxiv.1509.02914,
title = {Heat Transport in Spin Chains with Weak Spin-Phonon Coupling},
author = {A. L. Chernyshev and A. V. Rozhkov},
journal= {arXiv preprint arXiv:1509.02914},
year = {2016}
}
Comments
5+ pages main text, 4+ pages supplemental, 4+2 figures, adiabatic approximation to the published version