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Low-energy effective theory of the toric code model in a parallel field

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arxiv 0807.0487 v4 pith:SROMDQCV submitted 2008-07-03 cond-mat.other hep-lathep-thquant-ph

classification cond-mat.otherhep-lathep-thquant-ph
keywords phaseanyoniccodefieldmodelparalleltopologicaltoric
verification ladder T0 review T1 audit T2 compute T3 formal
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We determine analytically the phase diagram of the toric code model in a parallel magnetic field which displays three distinct regions. Our study relies on two high-order perturbative expansions in the strong- and weak-field limit, as well as a large-spin analysis. Calculations in the topological phase establish a quasiparticle picture for the anyonic excitations. We obtain two second-order transition lines that merge with a first-order line giving rise to a multicritical point as recently suggested by numerical simulations. We compute the values of the corresponding critical fields and exponents that drive the closure of the gap. We also give the one-particle dispersions of the anyonic quasiparticles inside the topological phase.

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  1. Self-dual $S_3$ gauge theory in 2+1d: lattice model and topological phase transitions

    cond-mat.str-el 2026-08 conditional novelty 8.0 of 10

    A new sign-problem-free lattice Hamiltonian realizes the S3 quantum double with electric-magnetic duality as translation, yielding a tetracritical Ising boundary and three predicted topological transitions.

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