Quasiparticle and Nonquasiparticle Transport in Doped Quantum Paraelectrics
Abstract
Charge transport in doped quantum paralectrics (QPs) presents a number of puzzles, including a pronounced regime in the resistivity. We analyze charge transport in a QP within a model of electrons coupled to a soft transverse optical (TO) mode via a two-phonon mechanism. For above the soft-mode frequency but below some characteristic scale (), the resistivity scales with the occupation number of phonons squared, i.e., as . The scattering rate does not depend on the carrier number density and is not affected by a crossover between degenerate and non-degenerate regimes, in agreement with the experiment. Temperatures higher than correspond to a non-quasiparticle regime, which we analyze by mapping the Dyson equation onto a problem of supersymmetric quantum mechanics. The combination of scattering by two TO phonons and by a longitudinal optical mode explains the data quite well.
Cite
@article{arxiv.2007.14947,
title = {Quasiparticle and Nonquasiparticle Transport in Doped Quantum Paraelectrics},
author = {Abhishek Kumar and Vladimir I. Yudson and Dmitrii L. Maslov},
journal= {arXiv preprint arXiv:2007.14947},
year = {2021}
}
Comments
5 pages, 2 figures, Supplementary material 23 pages