English

Evidence for hard chiral logarithms in quenched lattice QCD

High Energy Physics - Lattice 2016-08-31 v1

Abstract

We present the first direct evidence that quenched QCD differs from full QCD in the chiral (mq0m_q \rightarrow 0) limit, as predicted by chiral perturbation theory, from our quenched lattice QCD simulations at β=6/g2=6.0\beta = 6/g^2 = 6.0. We measured the spectrum of light hadrons on 163×6416^3 \times 64, 243×6424^3 \times 64 and 323×6432^3 \times 64, using staggered quarks of masses mq=0.01m_q=0.01, mq=0.005m_q=0.005 and mq=0.0025m_q=0.0025. The pion masses showed clear evidence for logarithmic violations of the PCAC relation mπ2mqm_{\pi}^2 \propto m_q, as predicted by quenched chiral perturbation theory. The dependence on spatial lattice volume precludes this being a finite size effect. No evidence was seen for such chiral logarithms in the behaviour of the chiral condensate ψˉψ\langle\bar{\psi}\psi\rangle.

Keywords

Cite

@article{arxiv.hep-lat/9502004,
  title  = {Evidence for hard chiral logarithms in quenched lattice QCD},
  author = {Seyong Kim and D. K. Sinclair},
  journal= {arXiv preprint arXiv:hep-lat/9502004},
  year   = {2016}
}

Comments

10 pages, 4 figures, uuencoded compressed postscript file