Complex semiclassical analysis of the Loschmidt amplitude and dynamical quantum phase transitions
Abstract
We propose a new computational method of the Loschmidt amplitude in a generic spin system on the basis of the complex semiclassical analysis on the spin-coherent state path integral. We demonstrate how the dynamical transitions emerge in the time evolution of the Loschmidt amplitude for the infinite-range transverse Ising model with a longitudinal field, exposed by a quantum quench of the transverse field from or . For both initial conditions, we obtain the dynamical phase diagrams that show the presence or absence of the dynamical transition in the plane of transverse field after a quantum quench and the longitudinal field. The results of semiclassical analysis are verified by numerical experiments. Experimental observation of our findings on the dynamical transition is also discussed.
Cite
@article{arxiv.1702.05396,
title = {Complex semiclassical analysis of the Loschmidt amplitude and dynamical quantum phase transitions},
author = {Tomoyuki Obuchi and Sei Suzuki and Kazutaka Takahashi},
journal= {arXiv preprint arXiv:1702.05396},
year = {2017}
}
Comments
12 pages, 11 figures