Phase Diagram of a Frustrated Quantum Antiferromagnet on the Honeycomb Lattice: Magnetic Order versus Valence-Bond Crystal formation
A.F. Albuquerque, D. Schwandt, B. Het\'enyi, S. Capponi, M. Mambrini,, A.M. L\"auchli

TL;DR
This study maps the phase diagram of a frustrated quantum antiferromagnet on the honeycomb lattice, revealing magnetic and valence-bond crystal phases, and suggests potential critical phenomena at phase transitions.
Contribution
It introduces a comprehensive computational approach combining multiple methods to identify and characterize various phases, including disordered and valence-bond crystal states, in the honeycomb lattice model.
Findings
Identification of magnetically ordered phases and disordered regions.
Discovery of a plaquette valence bond crystal phase.
Evidence of potential deconfined criticality at phase transitions.
Abstract
We present a comprehensive computational study of the phase diagram of the frustrated S=1/2 Heisenberg antiferromagnet on the honeycomb lattice, with second-nearest (J2) and third-neighbor (J3) couplings. Using a combination of exact diagonalizations of the original spin model, of the Hamiltonian projected into the nearest neighbor short range valence bond basis, and of an effective quantum dimer model, as well as a self-consistent cluster mean-field theory, we determine the boundaries of several magnetically ordered phases in the region J2,J3\in [0,1], and find a sizable magnetically disordered region in between. We characterize part of this magnetically disordered phase as a plaquette valence bond crystal phase. At larger J2, we locate a sizable region in which staggered valence bond crystal correlations are found to be important, either due to genuine valence bond crystal ordering or…
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