English

Critical endpoint of finite temperature phase transition for three flavor QCD

High Energy Physics - Lattice 2015-06-23 v1

Abstract

We investigate the critical endpoint of finite temperature phase transition of Nf=3N_f=3 QCD at zero chemical potential. We employ the renormalization-group improved Iwasaki gauge action and non-perturbatively O(a)O(a)-improved Wilson-clover fermion action. The critical endpoint is determined by using the intersection point of kurtosis for the temporal size NtN_t=4, 6, 8. Spatial sizes of NlN_l=6-16 (NtN_t=4), 10-24 (NtN_t=6), and 12-24 (NtN_t=8) are employed. We find that NtN_t=4 is out of the scaling region. Using results for NtN_t=6 and 8, and making linear extrapolations in 1/Nt21/N_t^2, we obtain t0TE=0.0975(14)(8)\sqrt{t_0}T_{\rm E}=0.0975(14)(8), t0mPS,E=0.2254(52)(105)\sqrt{t_0}m_{\rm PS,E}=0.2254(52)(105) and mPS,E/TE=2.311(63)(13)m_{\rm PS,E}/T_{\rm E}=2.311(63)(13), where the first error is statistical error, the second error is systematic error, and mPSm_{\rm PS} is the pseudo scalar meson mass. If one uses 1/t0=1.347(30)1/\sqrt{t_0}=1.347(30) GeV reported by Borsanyi et al., one finds TE=131(2)(1)(3)T_{\rm E}=131(2)(1)(3) MeV, mPS,E=304(7)(14)(7)m_{\rm PS,E}=304(7)(14)(7) MeV and mPS,E/mPS,Ephys,sym=0.739(17)(34)(17)m_{\rm PS,E}/m_{\rm PS,E}^{\rm phys, sym}=0.739(17)(34)(17), where the third error comes from error of t0\sqrt{t_0} and mPSphys,sym=(mπ2+2mK2)/3m_{\rm PS}^{\rm phys, sym}=\sqrt{(m_\pi^2+2m_K^2)/3}. Our current estimation of t0mPS,E\sqrt{t_0}m_{\rm PS,E} in the continuum limit is about 25% smaller than the SU(3) symmetric point.

Keywords

Cite

@article{arxiv.1411.7461,
  title  = {Critical endpoint of finite temperature phase transition for three flavor QCD},
  author = {Xiao-Yong Jin and Yoshinobu Kuramashi and Yoshifumi Nakamura and Shinji Takeda and Akira Ukawa},
  journal= {arXiv preprint arXiv:1411.7461},
  year   = {2015}
}

Comments

24 pages, 14 figures