4.8 Article

Triangular lattice quantum dimer model with variable dimer density

Journal

NATURE COMMUNICATIONS
Volume 13, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41467-022-33431-5

Keywords

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Funding

  1. U.S. Department of Energy [DE-SC0019030]
  2. Research Grants Counci of Hong Kong SAR of China [17303019, 17301420, 17301721, AoE/P-701/20]
  3. K.C. Wong Education Foundation [GJTD-2020-01]
  4. NSFC [11804383, 11975024]
  5. Seed Funding Quantum-Inspired explainable-AI at the HKU-TCL Joint Research Centre for Artificial Intelligence
  6. Beihang Hangzhou Innovation Institute Yuhang

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In this study, a large-scale quantum Monte Carlo simulation is performed on an extended triangular lattice quantum dimer model with terms in the Hamiltonian that annihilate and create single dimers. The results show the existence of distinct odd and even Z(2) spin liquids, along with several phases with no topological order. Additionally, dynamic spectra of these phases are presented, with implications for experiments on Rydberg atoms.
Quantum dimer models are known to host topological quantum spin liquid phases, and it has recently become possible to simulate such models with Rydberg atoms trapped in arrays of optical tweezers. Here, we present large-scale quantum Monte Carlo simulation results on an extension of the triangular lattice quantum dimer model with terms in the Hamiltonian annihilating and creating single dimers. We find distinct odd and even Z(2) spin liquids, along with several phases with no topological order: a staggered crystal, a nematic phase, and a trivial symmetric phase with no obvious broken symmetry. We also present dynamic spectra of the phases, and note implications for experiments on Rydberg atoms.

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