English

Schwinger-Dyson Study for Walking/Conformal Dynamics with IR Cutoffs

High Energy Physics - Lattice 2015-10-15 v1 High Energy Physics - Phenomenology

Abstract

Motivated by recent progress on many flavor QCD on a lattice, we investigate conformal/walking dynamics by using Schwinger-Dyson (SD) equation within an improved ladder approximation for two-loop running coupling. By numerically solving the SD equation, we obtain a pole mass mpm_{p}, pion decay constant fπf_{\pi}, and investigate the chiral symmetry breaking and mass anomalous dimension γm\gamma_{m} in the presence of IR cutoffs ΛIR\Lambda_{\mathrm{IR}}. We find that the chiral symmetry breaking is suppressed \ if IR cutoff ΛIR\Lambda_{\mathrm{IR}} becomes larger than the critical \ value near the dynamical mass (ΛIR\Lambda_{\mathrm{IR}} mD\simeq m_{D}) In the conformal phase the γm\gamma_{m} is strongly suppressed by IR cutoffs for ΛIR\Lambda _{\mathrm{IR}} mp\simeq m_{p}. We, then, obtain finite size hyperscaling (FSS) relation by adapting a linearized approximation for the SD equation, and examine the γm\gamma_{m} The results offer valuable insight and suggestion for analyses in lattice gauge theories.

Keywords

Cite

@article{arxiv.1510.03603,
  title  = {Schwinger-Dyson Study for Walking/Conformal Dynamics with IR Cutoffs},
  author = {Kohtaroh Miura and Kei-ichi Nagai and Akihiro Shibata},
  journal= {arXiv preprint arXiv:1510.03603},
  year   = {2015}
}

Comments

5 pages,2 figures; Presented at Sakata Memorial KMI Workshop on "Origin of Mass and Strong Coupling Gauge Theories" (SCGT15)

R2 v1 2026-06-22T11:18:54.960Z