Dual dynamic scaling in deconfined quantum criticality
arXiv:2201.08575 · doi:10.1103/PhysRevB.105.104420
Abstract
Emergent symmetry is one of the characteristic phenomena in deconfined quantum critical point (DQCP). As its nonequilibrium generalization, the dual dynamic scaling was recently discovered in the nonequilibrium imaginary-time relaxation dynamics in the DQCP of the - model. In this work, we study the nonequilibrium imaginary-time relaxation dynamics in the - model, which also hosts a DQCP belonging to the same equilibrium universality class. We not only verify the universality of the dual dynamic scaling at the critical point, but also investigate the breakdown and the vestige of the dual dynamic scaling when the tuning parameter is away from the critical point. We also discuss its possible experimental realizations in devices of quantum computers.
18 pages, 11 figures
References in corpus (31)
- "Deconfined" quantum critical points
- Quantum criticality beyond the Landau-Ginzburg-Wilson paradigm
- Evidence for deconfined quantum criticality in a two-dimensional Heisenberg model with four-spin interactions
- Scaling in the Fan of an Unconventional Quantum Critical Point
- Emergent space-time supersymmetry in 3D Weyl and 2D Dirac semimetals
- Emergence of supersymmetry at a critical point of a lattice model
- Many-body spin Berry phases emerging from the -flux state: antiferromagnetic/valence-bond-solid competition
- From an Antiferromagnet to a Valence Bond Solid: Evidence for a First Order Phase Transition
- Nearly deconfined spinon excitations in the square-lattice spin-1/2 Heisenberg antiferromagnet
- Duality between the deconfined quantum-critical point and the bosonic topological transition
- The performance of the quantum adiabatic algorithm on random instances of two optimization problems on regular hypergraphs
- Deconfined criticality, runaway flow in the two-component scalar electrodynamics and weak first-order superfluid-solid transitions
- The Higgs mode in a two-dimensional superfluid
- Universal Rephasing Dynamics after a Quantum Quench via Sudden Coupling of Two Initially Independent Condensates
- Some formal results for the valence bond basis
- Transitions to valence-bond solid order in a honeycomb lattice antiferromagnet
- Universal post-quench prethermalization at a quantum critical point
- Critical behavior of the QED-Gross-Neveu model: Duality and deconfined criticality
- Emergent supersymmetry at the Ising-Berezinskii-Kosterlitz-Thouless multicritical point
- Level spectroscopy in a two-dimensional quantum magnet: Linearly dispersing spinons at the deconfined quantum critical point
- Universal Properties of the Higgs Resonance in (2+1)-Dimensional U(1) Critical Systems
- Quantum electrodynamics in 2+1 dimensions, confinement, and the stability of U(1) spin liquids
- Quantum critical scaling behavior of deconfined spinons
- Large-N estimates of universal amplitudes of the CP^{N-1} theory and comparison with the JQ model
- Deconfined quantum criticality and emergent SO(5) symmetry in fermionic systems
- Thermodynamics of a gas of deconfined bosonic spinons in two dimensions
- Fermionic spinon theory of square lattice spin liquids near the Néel state
- Compact quantum electrodynamics in 2+1 dimensions and spinon deconfinement: a renormalization group analysis
- A Scaling Relation for Dangerously Irrelevant Symmetry-Breaking Fields
- Emergent topological excitations in a two-dimensional quantum spin system
- Short-imaginary-time quantum critical dynamics in the J-Q spin chain