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Spectra of a Gapped Quantum Spin Liquid with a Strong Chiral Excitation on the Triangular Lattice

Strongly Correlated Electrons 2022-08-25 v2

Abstract

While a quantum spin liquid (QSL) phase has been identified in the J1J_1-J2J_2 Heisenberg model on a triangular lattice via numerical calculations, debate persists about whether or not such a QSL is gapped or gapless, with contradictory conclusions from different techniques. Moreover, information about excitations and dynamics is crucial for the experimental detection of such a phase. In this work, we use exact diagonalization to characterize signatures of a QSL phase on the triangular lattice through the dynamical spin structure factor S(q,ω)\mathcal{S}(q,\omega) and Raman susceptibility χ(ω)\mathcal{\chi}(\omega). We find that spectra for the QSL phase show distinct features compared to those of neighboring phases; and both the Raman spectra and spin structure factor show gapped behaviour in the QSL phase. Interestingly, there is a prominent excitation mode in the Raman A2A_2 channel, indicating a strong subleading tendency toward a chiral spin liquid phase.

Keywords

Cite

@article{arxiv.2205.04727,
  title  = {Spectra of a Gapped Quantum Spin Liquid with a Strong Chiral Excitation on the Triangular Lattice},
  author = {Ta Tang and Brian Moritz and Thomas P. Devereaux},
  journal= {arXiv preprint arXiv:2205.04727},
  year   = {2022}
}

Comments

8 pages, 5 figures