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arXiv:hep-lat/0402031·v1·High Energy Physics — Lattice

Non-Commutativity of the Zero Chemical Potential Limit and the Thermodynamic Limit in Finite Density Systems

Jan Ambjorn (NBI and ITP Utrecht)🇩🇰 · Konstantinos N. Anagnostopoulos (U. Crete and NTUA)🇬🇷 · Jun Nishimura (KEK)🇯🇵 · Jacobus J.M. Verbaarschot (SUNY, Stony Brook)🇺🇸

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Abstract

Monte Carlo simulations of finite density systems are often plagued by the complex action problem. We point out that there exists certain non-commutativity in the zero chemical potential limit and the thermodynamic limit when one tries to study such systems by reweighting techniques. This is demonstrated by explicit calculations in a Random Matrix Theory, which is thought to be a simple qualitative model for finite density QCD. The factorization method allows us to understand how the non-commutativity, which appears at the intermediate steps, cancels in the end results for physical observables.

Comments: 7 pages, 9 figures

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