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Signatures of magnetic-field-driven quantum phase transitions in the entanglement entropy and spin dynamics of the Kitaev honeycomb model

David C. Ronquillo, Adu Vengal, and Nandini Trivedi
Phys. Rev. B 99, 140413(R) – Published 29 April 2019
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Abstract

The main question we address is how to probe the fractionalized excitations of a quantum spin liquid (QSL), for example, in the Kitaev honeycomb model. By analyzing the energy spectrum and entanglement entropy, for antiferromagnetic couplings and a field along either [111] or [001], we find a gapless QSL phase sandwiched between the non-Abelian Kitaev QSL and polarized phases. Increasing the field strength towards the polarized limit destroys this intermediate QSL phase, resulting in a considerable reduction in the number of frequency modes and the emergence of a beating pattern in the local dynamical correlations, possibly observable in pump-probe experiments.

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  • Received 12 July 2018
  • Revised 11 January 2019

DOI:https://doi.org/10.1103/PhysRevB.99.140413

©2019 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

David C. Ronquillo, Adu Vengal, and Nandini Trivedi

  • Department of Physics, The Ohio State University, Columbus, Ohio 43210, USA

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Issue

Vol. 99, Iss. 14 — 1 April 2019

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