Quantum decay of magnons in the unfrustrated honeycomb Heisenberg model
arXiv:2512.19162 · doi:10.1103/mx8k-y1jm
Abstract
We investigate the physical properties of elementary magnon excitations of the ordered antiferromagnetic Heisenberg model on the honeycomb lattice using quantum Monte Carlo (QMC) simulations, series expansions (SE), and continuous similarity transformations (CST). The stochastic analytic continuation method is used to determine the dynamic structure factor from correlation functions in imaginary time obtained by QMC. In contrast to the "roton minimum" of the square lattice Heisenberg antiferromagnet, we find that magnons on the honeycomb lattice completely decay in the corner of the Brillouin zone (-point); the entire weight is shifted into the continuum. These findings are fully supported by SE and CST in momentum space. The extrapolated one-magnon dispersion obtained from SE about the Ising limit quantitatively agrees with the extracted QMC excitation energies except around the -point, where large uncertainties in the extrapolation indicate the magnon decay. This quantum decay is further confirmed and understood by the CST, which yields a divergent flow when enforcing a magnon quasi-particle picture. The divergence originates from strong attractive magnon-magnon interactions leading to a bound state and thereby to a three-magnon continuum overlapping with the one-magnon state. This has the magnon quasi-particle picture break down at high energies on the honeycomb lattice.
15 pages, 5 figures
References in corpus (17)
- Fractional excitations in the square-lattice quantum antiferromagnet
- Quantum dynamics and entanglement of spins on a square lattice
- Nearly deconfined spinon excitations in the square-lattice spin-1/2 Heisenberg antiferromagnet
- Progress on stochastic analytic continuation of quantum Monte Carlo data
- Van Hove singularity in the magnon spectrum of the antiferromagnetic quantum honeycomb lattice
- Dynamical Signatures of Symmetry Broken and Liquid Phases in an Heisenberg Antiferromagnet on the Triangular Lattice
- Observation of plaquette fluctuations in the spin-1/2 honeycomb lattice
- Dynamical properties of Néel and valence-bond phases in the model on the honeycomb lattice
- Three-body bound states in antiferromagnetic spin ladders
- Monte Carlo based techniques for quantum magnets with long-range interactions
- Continuous similarity transformation for critical phenomena: easy-axis antiferromagnetic XXZ model
- Spin dynamics and continuum spectra of the honeycomb J1-J2 antiferromagnetic Heisenberg model
- Projective cluster-additive transformation for quantum lattice models
- Quantum melting of long-range ordered quantum antiferromagnets investigated by momentum-space continuous similarity transformations
- Quantitative description of long-range order in the anisotropic spin-1/2 Heisenberg antiferromagnet on the square lattice
- Comparing quantum fluctuations in the spin- and spin- XXZ Heisenberg models on square and honeycomb lattices
- Field-Induced Magnon Decay, Magnon Shadows, and Roton-like Excitations in the Honeycomb Antiferromagnet YbBr