String-like theory as solution to the sign problem of a finite density gauge theory

K. Langfeld
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引用次数: 2

Abstract

Z3 gauge theory with dynamical (bosonic) matter is studied in 4 dimensions with a finite chemical potential. This theory could be viewed as an effective theory describing the centre vortex picture of QCD colour confinement, but it is studied here with local interactions as theory in its own right. It is shown that the sign-problem can be solved by dualisation. The dual theory is derived: the pure gauge sector is a theory of closed membranes with Nambu-Goto action, and matter is described by open branes bounded by closed matter loops. The brane theory is simulated with Monte-Carlo techniques. Some evidence is found that the theory possesses a weakly-renormalisable phase with the scale set by a mass gap. Deconfinement at low temperatures and finite chemical potentials appears as a percolation transition for matter loops.
类弦理论作为有限密度规理论符号问题的解
研究了具有有限化学势的4维动态(玻色子)物质的Z3规范理论。这一理论可以看作是描述QCD色限中心涡图像的有效理论,但本文将局部相互作用作为其本身的理论进行研究。证明了符号问题可以用二象化来解决。导出了对偶理论:纯规范扇区是具有Nambu-Goto作用的闭膜理论,物质是由封闭物质环包围的开膜来描述的。利用蒙特卡罗技术对膜理论进行了仿真。一些证据表明,该理论具有一个弱重整相,其尺度由质量间隙确定。在低温和有限化学势下的解约束表现为物质环的渗透转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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