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首页> 外文期刊>Nuclear physics, B >Simulation strategies for the massless lattice Schwinger model in the dual formulation
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Simulation strategies for the massless lattice Schwinger model in the dual formulation

机译:对偶公式中无质量晶格Schwinger模型的仿真策略

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The dual form of the massless Schwinger model on the lattice overcomes the complex action problems from two sources: a topological term, as well as non-zero chemical potential, making these physically interesting cases accessible to Monte Carlo simulations. The partition function is represented as a sum over fermion loops, dimers and plaquette-surfaces such that all contributions are real and positive. However, these new variables constitute a highly constrained system and suitable update strategies have to be developed. In this exploratory study we present an approach based on locally growing plaquette-surfaces surrounded by fermion loop segments combined with a worm based strategy for updating chains of dimers, as well as winding fermion loops. The update strategy is checked with conventional simulations as well as reference data from exact summation on small volumes and we discuss some physical implications of the results.
机译:晶格上无质量Schwinger模型的对偶形式从两个方面克服了复杂的作用问题:拓扑项以及非零化学势,使这些物理上有趣的情况可用于Monte Carlo模拟。分配函数表示为费米环,二聚体和球状表面的总和,因此所有贡献都是实数和正数。但是,这些新变量构成了高度受限的系统,必须开发适当的更新策略。在这项探索性研究中,我们提出了一种方法,该方法基于局部生长的,覆盖有费米子环片段的壁球表面,结合基于蠕虫的策略来更新二聚体以及缠绕费米子环。更新策略将通过常规模拟以及来自小批量精确求和的参考数据进行检查,我们将讨论结果的一些物理含义。

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