Quench Dynamics in Confined 1+1-Dimensional Systems
Abstract
We present a framework for investigating the response of conformally-invariant confined 1+1-dimensional systems to a quantum quench. While conformal invariance is generally destroyed in a global quantum quench, systems that can be described as or mapped to integrable deformations of a CFT may present special instances where a conformal field theory-based analysis could provide useful insight into the non-equilibrium dynamics. We investigate this possibility by considering a quench analogous to that of the Quantum Newton's Cradle experiment [Nature 440, 900 (2006)] and demonstrating qualitative agreement between observables derived in the CFT framework and those of the experimental system. We propose that this agreement may be a feature of the proximity of the experimental system to an integrable deformation of a c=1 CFT.
Cite
@article{arxiv.1502.02678,
title = {Quench Dynamics in Confined 1+1-Dimensional Systems},
author = {Dalit Engelhardt},
journal= {arXiv preprint arXiv:1502.02678},
year = {2016}
}
Comments
6 pages, to appear in J. Phys. A