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arxiv: 1405.4811 · v2 · pith:MPQYQTVGnew · submitted 2014-05-19 · ❄️ cond-mat.str-el · cond-mat.quant-gas· hep-lat· hep-th· quant-ph

Tensor Networks for Lattice Gauge Theories with continuous groups

classification ❄️ cond-mat.str-el cond-mat.quant-gashep-lathep-thquant-ph
keywords gaugelatticetheoriestensorentropyinvariantkogut-susskindmodels
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We discuss how to formulate lattice gauge theories in the Tensor Network language. In this way we obtain both a consistent truncation scheme of the Kogut-Susskind lattice gauge theories and a Tensor Network variational ansatz for gauge invariant states that can be used in actual numerical computation. Our construction is also applied to the simplest realization of the quantum link models/gauge magnets and provides a clear way to understand their microscopic relation with Kogut-Susskind lattice gauge theories. We also introduce a new set of gauge invariant operators that modify continuously Rokshar-Kivelson wave functions and can be used to extend the phase diagram of known models. As an example we characterize the transition between the deconfined phase of the $Z_2$ lattice gauge theory and the Rokshar-Kivelson point of the U(1) gauge magnet in 2D in terms of entanglement entropy. The topological entropy serves as an order parameter for the transition but not the Schmidt gap.

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