English

Short-imaginary-time quantum critical dynamics in the J-Q$_3$ spin chain

Strongly Correlated Electrons 2020-09-23 v2

Abstract

We study the short-imaginary-time quantum critical dynamics (SITQCD) in the J-Q3_3 spin chain, which hosts a quasi-long-range-order phase to a valence bond solid transition. By using the scaling form of the SITQCD with a saturated ordered phase, we are able to locate the critical point at qc=0.170(14)q_{\rm c}=0.170(14). We also obtain the critical initial slip exponent θ=0.507(3)\theta=-0.507(3) and the static exponent β/ν=0.498(2)\beta/\nu=0.498(2). More strikingly, we find that the scaling dimension of the initial order parameter x0x_{0} is close to zero, which suggests that the initial order parameter is a marginal operator. As a result, there is no initial increase behavior of the order parameter in the short-imaginary-time relaxation process for this model, which is very different from the relaxation dynamics in the Ising-type phase transitions. Our numerical results are realized by the projector quantum Monte Carlo algorithm.

Keywords

Cite

@article{arxiv.2006.11833,
  title  = {Short-imaginary-time quantum critical dynamics in the J-Q$_3$ spin chain},
  author = {Yu-Rong Shu and Shuai Yin},
  journal= {arXiv preprint arXiv:2006.11833},
  year   = {2020}
}

Comments

8 pages, 8 figures