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arXiv:nucl-th/0409051·v1·Nuclear Theory

A General Effective Theory for Dense Quark Matter

P.T. Reuter🇩🇪 · Q. Wang🇩🇪 · D.H. Rischke🇩🇪

Abstract

A general effective action for quark matter at nonzero temperature and/or nonzero density is derived. Irrelevant quark modes are distinguished from relevant quark modes, and hard from soft gluon modes, by introducing two separate cut-offs in momentum space, one for quarks, , and one for gluons, . Irrelevant quark modes and hard gluon modes are then exactly integrated out in the functional integral representation of the QCD partition function. Depending on the specific choice for and , the resulting effective action contains well-known effective actions for hot and/or dense quark matter, for instance the ``Hard Thermal Loop'' (HTL) or the ``Hard Dense Loop'' (HDL) action, as well as the high-density effective theory proposed by Hong and others.

Comments: 10 pages, 6 figures, contribution to proceedings of SEWM 2004

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