Trapping Centers at the Superfluid-Mott-insulator Criticality: Transition between Charge-quantized States
Abstract
Under the conditions of superfluid-Mott-insulator criticality in two dimensions, the trapping centers--i.e., local potential wells and bumps--are generically characterized by an integer charge corresponding to the number of trapped particles (if positive) or holes (if negative). Varying the strength of the center leads to a transition between two competing ground states with charges differing by . The hallmark of the transition scenario is a splitting of the number density distortion, , into a half-integer core and a large halo carrying the complementary charge of . The sign of the halo changes across the transition and the radius of the halo, , diverges on the approach to the critical strength of the center, , by the law , with .
Keywords
Cite
@article{arxiv.1608.02232,
title = {Trapping Centers at the Superfluid-Mott-insulator Criticality: Transition between Charge-quantized States},
author = {Yuan Huang and Kun Chen and Youjin Deng and Boris Svistunov},
journal= {arXiv preprint arXiv:1608.02232},
year = {2016}
}
Comments
5 pages, 5 figures