A Quenched Study of SU(3) Glueballs at Finite Temperature
Abstract
Thermal properties of glueballs in SU(3) Yang-Mills theory are investigated in a large temperature range from to 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 of glueballs remain almost constant when the temperature is approaching the critical temperature from below, and start to reduce gradually with the temperature going above . The correlators in the , , and channels are also analyzed based on the Breit-Wigner by assuming a thermal width to the pole mass of each thermal glueball ground state. While the values of are insensitive to in the whole temperature range, the thermal widths exhibit distinct behaviors at temperatures below and above . The widths are very small (approximately few percent of or even smaller) when , but grow abruptly when and reach values of roughly at .
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