Non-equilibrium time evolution and rephasing in the quantum sine-Gordon model
Abstract
We discuss the non-equilibrium time evolution of the phase field in the sine-Gordon model using two very different approaches: the truncated Wigner approximation and the truncated conformal space approach. We demonstrate that the two approaches agree for a period covering the first few oscillations, thereby giving a solid theoretical prediction in the framework of sine-Gordon model, which is thought to describe the dynamics of two bosonic condensates in quasi-one-dimensional traps coupled via a Josephson tunneling term. We conclude, however, that the recently observed phase-locking behavior cannot be explained in terms of homogeneous sine-Gordon dynamics, which hints at the role of other degrees of freedom or inhomogeneity in the experimental system.
Cite
@article{arxiv.1809.06789,
title = {Non-equilibrium time evolution and rephasing in the quantum sine-Gordon model},
author = {D. X. Horvath and I. Lovas and M. Kormos and G. Takacs and G. Zarand},
journal= {arXiv preprint arXiv:1809.06789},
year = {2019}
}
Comments
34 pages, 9 figures