Critical endpoint of finite temperature phase transition for three flavor QCD
Abstract
We investigate the critical endpoint of finite temperature phase transition of QCD at zero chemical potential. We employ the renormalization-group improved Iwasaki gauge action and non-perturbatively -improved Wilson-clover fermion action. The critical endpoint is determined by using the intersection point of kurtosis for the temporal size =4, 6, 8. Spatial sizes of =6-16 (=4), 10-24 (=6), and 12-24 (=8) are employed. We find that =4 is out of the scaling region. Using results for =6 and 8, and making linear extrapolations in , we obtain , and , where the first error is statistical error, the second error is systematic error, and is the pseudo scalar meson mass. If one uses GeV reported by Borsanyi et al., one finds MeV, MeV and , where the third error comes from error of and . Our current estimation of 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