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arxiv: 1210.8344 · v3 · pith:LHKPOCMEnew · submitted 2012-10-31 · 🧮 math-ph · math.MP

A quantum Mermin--Wagner theorem for a generalized Hubbard model on a 2D graph

classification 🧮 math-ph math.MP
keywords bosoniccontinuousdimensiongeneralizedgraphhubbardinvariantmermin--wagner
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This paper is the second in a series of papers considering symmetry properties of a bosonic quantum system over an 2D graph, with continuous spins, in the spirit of the Mermin--Wagner theorem. Here we consider bosonic systems on bi-dimensional graphs where particles can jump from a vertex to another (a generalized Hubbard model). The Feynman--Kac representation is used for proving that if the local Hamiltonians are invariant under a continuous group of transformations ${\tt G}$ (a Euclidean space or a torus of dimension $d'$ acting on a torus of dimension $d\geq d'$) then any infinite-volume Gibbs state from a certain class (introduced in the paper) is also ${\tt G}$-invariant.

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