Obstruction to Ergodicity from Locality and Higher Symmetries on the Lattice
arXiv:2511.21815 · doi:10.1103/6dpg-bt89
Abstract
We argue that the presence of any exact higher-form symmetry, under mild assumptions, presents a fundamental obstruction to ergodicity under unitary dynamics in lattice systems with local interactions and finite on-site Hilbert space dimension. Focusing on the two-dimensional case, we show that such systems necessarily exhibit Hilbert space fragmentation and explicitly construct Krylov sectors whose number scales exponentially with system size. While these sectors cannot be distinguished by symmetry quantum numbers, we identify the emergent integrals of motion which characterize them. Our symmetry-based approach is insensitive to details of the Hamiltonian and the lattice, providing a systematic explanation for ergodicity-breaking in a range of systems, including quantum link models.
5+3 pages. v2: Updated references and minor revisions; close to published version
References in corpus (31)
- Probing many-body dynamics on a 51-atom quantum simulator
- Generalized Global Symmetries
- Quantum Many-Body Scars and Hilbert Space Fragmentation: A Review of Exact Results
- Generalized Symmetries in Condensed Matter
- Observing non-ergodicity due to kinetic constraints in tilted Fermi-Hubbard chains
- Quantum Many-Body Scars: A Quasiparticle Perspective
- Non-Invertible Higher-Categorical Symmetries
- Anomalous Diffusion in Dipole- and Higher-Moment Conserving Systems
- Kinetically constrained freezing transition in a dipole-conserving system
- Quantum scars from zero modes in an Abelian lattice gauge theory on ladders
- Disorder-free localization in an interacting two-dimensional lattice gauge theory
- Hilbert Space Fragmentation and Exact Scars of Generalized Fredkin Spin Chains
- Minimal model for Hilbert space fragmentation with local constraints
- Hilbert space fragmentation in a 2D quantum spin system with subsystem symmetries
- Pivot Hamiltonians as generators of symmetry and entanglement
- Emergence of Hilbert Space Fragmentation in Ising Models with a Weak Transverse Field
- Scars from protected zero modes and beyond in quantum link and quantum dimer models
- Hilbert space fragmentation and slow dynamics in particle-conserving quantum East models
- From Quantum Link Models to D-Theory: A Resource Efficient Framework for the Quantum Simulation and Computation of Gauge Theories
- Hilbert Space Fragmentation in Open Quantum Systems
- Ergodicity breaking provably robust to arbitrary perturbations
- Fractionalization of Coset Non-Invertible Symmetry and Exotic Hall Conductance
- Sublattice scars and beyond in two-dimensional quantum link lattice gauge theories
- Topologically stable ergodicity breaking from emergent higher-form symmetries in generalized quantum loop models
- Hilbert space fragmentation at the origin of disorder-free localization in the lattice Schwinger model
- Towards absolutely stable ergodicity breaking in two and three dimensions
- Robust Hilbert space fragmentation in group-valued loop models
- Strong Hilbert space fragmentation and fractons from subsystem and higher-form symmetries
- Non-onsite symmetry breaking: topological phase coexistence and criticality
- Generalized Hall Conductivities in Local Commuting Projector Models: Generalized Symmetries and Protected Surface Modes
- Geometric fragmentation and anomalous thermalization in cubic dimer model