Quenched QCD at finite density
Abstract
Simulations of quenched at relatively small but {\it nonzero} chemical potential on lattices indicate that the nucleon screening mass decreases linearly as increases predicting a critical chemical potential of one third the nucleon mass, , by extrapolation. The meson spectrum does not change as increases over the same range, from zero to . Past studies of quenched lattice QCD have suggested that there is phase transition at . We provide alternative explanations for these results, and find a number of technical reasons why standard lattice simulation techniques suffer from greatly enhanced fluctuations and finite size effects for ranging from to . We find evidence for such problems in our simulations, and suggest that they can be surmounted by improved measurement techniques.
Cite
@article{arxiv.hep-lat/9401039,
title = {Quenched QCD at finite density},
author = {J. B. Kogut and M-P Lombardo and D. K. Sinclair},
journal= {arXiv preprint arXiv:hep-lat/9401039},
year = {2009}
}
Comments
23 pages, Revtex