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A Quenched Study of SU(3) Glueballs at Finite Temperature

High Energy Physics - Lattice 2010-03-12 v3

Abstract

Thermal properties of glueballs in SU(3) Yang-Mills theory are investigated in a large temperature range from 0.3Tc0.3T_c to 1.9Tc1.9T_c on anisotropic lattices. The glueball operators are optimized for the projection of the ground states by the variational method with a smearing scheme. Their thermal correlators are calculated in all 20 symmetry channels. It is found in all channels that the pole masses MGM_G of glueballs remain almost constant when the temperature is approaching the critical temperature TcT_c from below, and start to reduce gradually with the temperature going above TcT_c. The correlators in the 0++0^{++}, 0+0^{-+}, and 2++2^{++} channels are also analyzed based on the Breit-Wigner Ansatz\emph{Ansatz} by assuming a thermal width Γ\Gamma to the pole mass ω0\omega_0 of each thermal glueball ground state. While the values of ω0\omega_0 are insensitive to TT in the whole temperature range, the thermal widths Γ\Gamma exhibit distinct behaviors at temperatures below and above TcT_c. The widths are very small (approximately few percent of ω0\omega_0 or even smaller) when T<TcT<T_c, but grow abruptly when T>TcT>T_c and reach values of roughly Γω0/2\Gamma\sim \omega_0/2 at T1.9TcT\approx 1.9T_c.

Keywords

Cite

@article{arxiv.0903.1991,
  title  = {A Quenched Study of SU(3) Glueballs at Finite Temperature},
  author = {Xiang-Fei Meng and Gang Li and Ying Chen and Chuan Liu and Yu-Bin Liu and Jian-Ping Ma and Jian-Bo Zhang},
  journal= {arXiv preprint arXiv:0903.1991},
  year   = {2010}
}

Comments

13 pages, 38 figures