We study the behavior of the Rényi entropies for the toric code subject to a variety of different perturbations, by means of 2D density matrix renormalization group and analytical methods. We find that Rényi entropies of different index α display derivatives with opposite sign, as opposed to typical symmetry breaking states, and can be detected on a very small subsystem regardless of the correlation length. This phenomenon is due to the presence in the phase of a point with flat entanglement spectrum, zero correlation length, and area law for the entanglement entropy. We argue that this kind of splitting is common to all the phases with a certain group theoretic structure, including quantum double models, cluster states, and other quantum spin liquids. The fact that the size of the subsystem does not need to scale with the correlation length makes it possible for this effect to be accessed experimentally. © 2013 American Physical Society.

Local response of topological order to an external perturbation / Hamma, Alioscia; Cincio, Lukasz; Santra, Siddhartha; Zanardi, Paolo; Amico, Luigi. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 110:21(2013), p. 210602. [10.1103/PhysRevLett.110.210602]

Local response of topological order to an external perturbation

Alioscia Hamma;
2013

Abstract

We study the behavior of the Rényi entropies for the toric code subject to a variety of different perturbations, by means of 2D density matrix renormalization group and analytical methods. We find that Rényi entropies of different index α display derivatives with opposite sign, as opposed to typical symmetry breaking states, and can be detected on a very small subsystem regardless of the correlation length. This phenomenon is due to the presence in the phase of a point with flat entanglement spectrum, zero correlation length, and area law for the entanglement entropy. We argue that this kind of splitting is common to all the phases with a certain group theoretic structure, including quantum double models, cluster states, and other quantum spin liquids. The fact that the size of the subsystem does not need to scale with the correlation length makes it possible for this effect to be accessed experimentally. © 2013 American Physical Society.
2013
Local response of topological order to an external perturbation / Hamma, Alioscia; Cincio, Lukasz; Santra, Siddhartha; Zanardi, Paolo; Amico, Luigi. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 110:21(2013), p. 210602. [10.1103/PhysRevLett.110.210602]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/893104
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