Ground-state phase diagram of anisotropically interacting Heisenberg-$\Gamma$ models on a honeycomb lattice
Takafumi Suzuki, Takuto Yamada, and Sei-ichiro Suga

TL;DR
This study maps the ground-state phase diagram of the anisotropic Heisenberg-$ extGamma$ model on a honeycomb lattice, revealing the stability of certain phases and the instability of the quantum spin liquid under interaction anisotropy.
Contribution
It provides a detailed analysis of how anisotropy affects the phase diagram of the Heisenberg-$ extGamma$ model using dimer series expansion and exact diagonalization.
Findings
Triplet dimer phase persists up to isotropic interactions in certain parameter regimes.
Most states become 2D long-range ordered with infinitesimal interchain coupling.
Quantum spin liquid is unstable against interaction anisotropy.
Abstract
In this paper, we investigate the ground-state phase diagram of the Heisenberg- model on a honeycomb lattice by dimer series expansion and exact diagonalization. We focus on the effects of the anisotropy of the interactions; by tuning the coupling constants, the system changes between the isolated dimer and the spin-chain models. We find that, in the spin-chain limit, there are three kinds of states: a Tomonaga-Luttinger liquid and two magnetically long-range-ordered states. All three states become two-dimensional long-range ordered states by the infinitesimal interchain interaction except for the case where the Heisenberg interaction is much weaker than the off-diagonal symmetric () interaction. Starting from the isolated dimer limit, a triplet dimer phase survives up to the isotropically interacting system in a large part of the phase diagram where the…
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