Two-particle decay and quantum criticality in dimerized antiferromagnets
arXiv:1101.3784 · doi:10.1103/PhysRevB.83.174416
Abstract
In certain Mott-insulating dimerized antiferromagnets, triplet excitations of the paramagnetic phase can decay into the two-particle continuum. When such a magnet undergoes a quantum phase transition into a magnetically ordered state, this coupling becomes part of the critical theory provided that the lattice ordering wavevector is zero. One microscopic example is the staggered-dimer antiferromagnet on the square lattice, for which deviations from O(3) universality have been reported in numerical studies. Using both symmetry arguments and microscopic calculations, we show that a non-trivial cubic term arises in the relevant order-parameter quantum field theory, and assess its consequences using a combination of analytical and numerical methods. We also present finite-temperature quantum Monte Carlo data for the staggered-dimer antiferromagnet which complement recently published results. The data can be consistently interpreted in terms of critical exponents identical to that of the standard O(3) universality class, but with anomalously large corrections to scaling. We argue that the two-particle decay of critical triplons, although irrelevant in two spatial dimensions, is responsible for the leading corrections to scaling due to its small scaling dimension.
14 pages, 7 figs
References in corpus (10)
- Anderson Transitions
- Quantum criticality beyond the Landau-Ginzburg-Wilson paradigm
- Bose-Einstein Condensation in Magnetic Insulators
- Quantum magnetism and criticality
- Generalized Directed Loop Method for Quantum Monte Carlo Simulations
- Evidence of Unconventional Universality Class in a Two-Dimensional Dimerized Quantum Heisenberg Model
- Comprehensive quantum Monte Carlo study of the quantum critical points in planar dimerized/quadrumerized Heisenberg models
- Spin-gap phase of a quantum spin system on a honeycomb lattice
- Decay of quasiparticles in quantum spin liquids
- Quantum Phase Transition in a Heisenberg Antiferromagnet on a Square Lattice with Strong Plaquette Interactions
Cited by in corpus (32)
- Spontaneous Magnon Decays
- Bridging lattice-scale physics and continuum field theory with quantum Monte Carlo simulations
- Quantum Magnetism in Minerals
- Entanglement entropy scaling in the bilayer Heisenberg spin system
- Dynamical structure factors and excitation modes of the bilayer Heisenberg model
- Engineering Surface Critical Behavior of (2+1)-Dimensional O(3) Quantum Critical Points
- Shannon-Rényi entropies and participation spectra across 3d criticality
- Anomalous quantum-critical scaling corrections in two-dimensional antiferromagnets
- Nonordinary criticality at the edges of planar spin-1 Heisenberg antiferromagnets
- Nonordinary edge criticaliy of two-dimensional quantum critical magnets
- Velocity of excitations in ordered, disordered and critical antiferromagnets
- Conserved current correlators of conformal field theories in 2+1 dimensions
- Solving the puzzle of an unconventional phase transition for a 2d dimerized quantum Heisenberg model
- Néel to dimer transition in spin-S antiferromagnets: Comparing bond operator theory with quantum Monte Carlo simulations for bilayer Heisenberg models
- Non-linear bond-operator theory and 1/d expansion for coupled-dimer magnets I: Paramagnetic phase
- Frustrated spin- Heisenberg magnet on a square-lattice bilayer: High-order study of the quantum critical behavior of the ---- model
- Strong quantum effects in an almost classical antiferromagnet on a kagome lattice
- Monte Carlo simulation with aspect ratio optimization: Anomalous anisotropic scaling in dimerized antiferromagnet
- Frustrated honeycomb-lattice bilayer quantum antiferromagnet in a magnetic field: Unconventional phase transitions in a two-dimensional isotropic Heisenberg model
- Triangular-lattice anisotropic dimerized Heisenberg antiferromagnet: Stability and excitations of the quantum paramagnetic phase
- Criticality and scaling corrections for two-dimensional Heisenberg models in plaquette patterns with strong and weak couplings
- A high-order study of the quantum critical behavior of a frustrated spin- antiferromagnet on a stacked honeycomb bilayer
- Vector boson excitations near deconfined quantum critical points
- Universal scalings of Néel temperature, staggered magnetization density, and spinwave velocity of three-dimensional disordered and clean quantum antiferromagnets
- Typicality at quantum-critical points
- Spin excitations in the two-dimensional strongly coupled dimer system malachite
- Validity of Harris criterion for two-dimensional quantum spin systems with quenched disorder
- Anomalous scaling corrections and quantum phase diagram of the Heisenberg antiferromagnet on the spatially anisotropic honeycomb lattice
- Entanglement entropy for the valence bond solid phases of two-dimensional dimerized Heisenberg antiferromagnets
- Conformal Data for the O(3) Wilson-Fisher Conformal Field Theory from Fuzzy Sphere Realization of the Quantum Rotor Model
- Quantum phase transitions: The mean-field perspective
- Evidence of anomalous Curie constants for nonmagnetic impurities in a critical 2-dimensional model on the honeycomb lattice