Suppressing defect production during passage through a quantum critical point
Abstract
We show that a closed quantum system driven through a quantum critical point with two rates (which controls its proximity to the quantum critical point) and (which controls the dispersion of the low-energy quasiparticles at the critical point) exhibits novel scaling laws for defect density and residual energy . We demonstrate suppression of both and with increasing leading to an alternate route to achieving near-adiabaticity in a finite time for a quantum system during its passage through a critical point. We provide an exact solution for such dynamics with linear drive protocols applied to a class of integrable models, supplement this solution with scaling arguments applicable to generic many-body Hamiltonians, and discuss specific models and experimental systems where our theory may be tested.
Cite
@article{arxiv.1402.4805,
title = {Suppressing defect production during passage through a quantum critical point},
author = {Jay D. Sau and K. Sengupta},
journal= {arXiv preprint arXiv:1402.4805},
year = {2014}
}
Comments
4.5 pages, 3 figures + Supplementary information