English

Investigating the topological structure of quenched lattice QCD with overlap fermions by using multi-probing approximation

High Energy Physics - Lattice 2017-09-01 v3

Abstract

The topological charge density and topological susceptibility are determined by multi-probing approximation using overlap fermions in quenched SU(3) gauge theory. Then we investigate the topological structure of the quenched QCD vacuum, and compare it with results from the all-scale topological density, the results are consistent. Random permuted topological charge density is used to check whether these structures represent underlying ordered properties. Pseudoscalar glueball mass is extracted from the two-point correlation function of the topological charge density. We study 33 ensembles of different lattice spacing aa with the same lattice volume 163×3216^{3}\times32, the results are compatible with the results of all-scale topological charge density, and the topological structures revealed by multi-probing are much closer to all-scale topological charge density than that by eigenmode expansion.

Keywords

Cite

@article{arxiv.1703.07969,
  title  = {Investigating the topological structure of quenched lattice QCD with overlap fermions by using multi-probing approximation},
  author = {You-Hao Zou and Jian-Bo Zhang and Guang-Yi Xiong and Ying Chen and Chuan Liu and Yu-Bin Liu and Jian-Ping Ma},
  journal= {arXiv preprint arXiv:1703.07969},
  year   = {2017}
}

Comments

12 pages,34 figures