Scaling Study of Pure Gauge Lattice QCD by Monte Carlo Renormalization Group Method
K. Akemi, Ph. deForcrand, M. Fujisaki, T. Hashimoto, H. C. Hege, S. Hioki, O. Miyamura, A. Nakamura, M. Okuda I. O. Stamatescu, Y. Tago, T. Takaishi
Abstract
The scaling behavior of pure gauge SU(3) in the region β=5.85 - 7.60 is examined by a Monte Carlo Renormalization Group analysis. The coupling shifts induced by factor 2 blocking are measured both on 324 and 164 lattices with high statistics. A systematic deviation from naive 2-loop scaling is clearly seen. The mean field and effective coupling constant schemes explain part, but not all of the deviation. It can be accounted for by a suitable change of coupling constant, including a correction term O(g7) in the 2-loop lattice β-function. Based on this improvement, σ/Λ MSnf=0 is estimated to be 2.2( 0.1) from the analysis of the string tension σ.
Create a lesson
Related papers
Efficient Quantum Simulations of Yang-Mills theory with Maximal-tree Gauge
Tianyin Li, Ying-Ying Li, Xiaoyang Wang et al.
Physics-informed quantum algorithms for glueball-like excitations in a Z2 lattice gauge theory
Dan-Bo Zhang
Anomalous behavior of Wilson fermions in the presence of monopoles
Manuel Cortina, Rajamani Narayanan, Ray Romero
Direct lattice QCD calculation of the θ-induced CP-violating pion-nucleon coupling
Chuan-Yang Li, Jun Hua, Jian Liang et al.
Calculation of neutron electric dipole moment from Lattice QCD
Thomas Blum, Fangcheng He, Taku Izubuchi et al.
Exponential-in-Nc2 cost reduction of product-formula-based quantum simulations of quantum chromodynamics
Zohreh Davoudi, Jesse R. Stryker