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Efficient simulation of relativistic fermions via vertex models

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arxiv 0812.3565 v1 pith:B3HNIZTJ submitted 2008-12-18 hep-lat cond-mat.stat-mech

classification hep-latcond-mat.stat-mech
keywords algorithmfermionsmodelsefficientloopsimulationvertexarbitrary
verification ladder T0 review T1 audit T2 compute T3 formal
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We have developed an efficient simulation algorithm for strongly interacting relativistic fermions in two-dimensional field theories based on a formulation as a loop gas. The loop models describing the dynamics of the fermions can be mapped to statistical vertex models and our proposal is in fact an efficient simulation algorithm for generic vertex models in arbitrary dimensions. The algorithm essentially eliminates critical slowing down by sampling two-point correlation functions and it allows simulations directly in the massless limit. Moreover, it generates loop configurations with fluctuating topological boundary conditions enabling to simulate fermions with arbitrary periodic or anti-periodic boundary conditions. As illustrative examples, the algorithm is applied to the Gross-Neveu model and to the Schwinger model in the strong coupling limit.

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