Quantum Many-Body Scars and Quantum Criticality
arXiv:2108.05113 · doi:10.1103/PhysRevB.105.125123
Abstract
In this letter, we study the PXP Hamiltonian with an external magnetic field that exhibits both quantum scar states and quantum criticality. It is known that this model hosts a series of quantum many-body scar states violating quantum thermalization at zero magnetic field, and it also exhibits an Ising quantum phase transition driven by finite magnetic field. Although the former involves the properties of generic excited states and the latter concerns the low-energy physics, we discover two surprising connections between them, inspired by the observation that both states possess log-volume law entanglement entropies. First, we show that the quantum many-body scar states can be tracked to a set of quantum critical states, whose nature can be understood as pair-wisely occupied Fermi sea states. Second, we show that the partial violation of quantum thermalization diminishes in the quantum critical regime. We envision that these connections can be extended to general situations and readily verified in existing cold atom experimental platforms.
6 pages, 5 figures
References in corpus (9)
- Thermalization and its mechanism for generic isolated quantum systems
- Probing many-body dynamics on a 51-atom quantum simulator
- Controlling many-body dynamics with driven quantum scars in Rydberg atom arrays
- Emergent SU(2) dynamics and perfect quantum many-body scars
- Competing density-wave orders in a one-dimensional hard-boson model
- Mott insulators in strong electric fields
- Quantum Many-Body Scar States with Emergent Kinetic Constraints and Finite-Entanglement Revivals
- Eta-Pairing in Hubbard Models: From Spectrum Generating Algebras to Quantum Many-Body Scars
- Eta-pairing states as true scars in an extended Hubbard Model
Cited by in corpus (35)
- Quantum Many-Body Scars and Hilbert Space Fragmentation: A Review of Exact Results
- Observation of many-body scarring in a Bose--Hubbard quantum simulator
- Probing quantum scars and weak ergodicity-breaking through quantum complexity
- Superdiffusive Energy Transport in Kinetically Constrained Models
- Microscopic characterization of Ising conformal field theory in Rydberg chains
- Quantum Information Scrambling in Quantum Many-body Scarred Systems
- Interrelated Thermalization and Quantum Criticality in a Lattice Gauge Simulator
- Tunable Confinement-Deconfinement Transition in an Ultracold Atom Quantum Simulator
- Functional building blocks for scalable multipartite entanglement in optical lattices
- Emergent Gauge Theory in Rydberg Atom Arrays
- Multi-magnon quantum many-body scars from tensor operators
- Holographic Quantum Scars
- Composite Spin Approach to the Blockade Effect in Rydberg Atom Arrays
- A Cold-Atom Particle Collider
- Bridging quantum criticality via many-body scarring
- Weak Ergodicity Breaking in Non-Hermitian Many-body Systems
- Bridging quantum many-body scar and quantum integrability in Ising chains with transverse and longitudinal fields
- Mobility edges through inverted quantum many-body scarring
- Quantum Algorithms for Inverse Participation Ratio Estimation in multi-qubit and multi-qudit systems
- Gauge theory description of Rydberg atom arrays with a tunable blockade radius
- Unraveling PXP Many-Body Scars through Floquet Dynamics
- Quantum many-body scars in spin-1 Kitaev chain with uniaxial single-ion anisotropy
- Stabilizer Scars
- Many-Body Non-Hermitian Skin Effect with Exact Steady States in the Dissipative Quantum Link Model
- From the Quantum Breakdown Model to the Lattice Gauge Theory
- Quantum many-body scars in the Bose-Hubbard model with a three-body constraint
- Lattice Defects in Rydberg Atom Arrays
- Observing quantum many-body scars in random quantum circuits
- Synthetic U(1) Gauge Invariance in a Spin-1 Bose Gas
- Ergodicity breaking and deviation from Eigenstate Thermalisation in relativistic QFT
- Phase Transitions in Quantum Many-Body Scars
- Exploring quantum criticality and ergodicity-breaking dynamics in spin-1 Kitaev chains via single-ion anisotropies
- Hilbert Space Fragmentation and Subspace Scar Time-Crystallinity in Driven Homogeneous Central-Spin Models
- Geometric phase and multipartite entanglement of Rydberg atom chains
- Relaxation Fluctuations of Correlation Functions: Spin and Random Matrix Models