ScarFinder: a detector of optimal scar trajectories in quantum many-body dynamics
arXiv:2504.12383 · doi:10.1103/8g8w-nkwx
Abstract
Mechanisms that give rise to coherent quantum dynamics, such as quantum many-body scars, have recently attracted much interest as a way of controlling quantum chaos. However, identifying the presence of quantum scars in general many-body Hamiltonians remains an outstanding challenge. Here we introduce ScarFinder, a variational framework that reveals possible scar-like dynamics without prior knowledge of scar states or their algebraic structure. By iteratively evolving and projecting states within a low-entanglement variational manifold, ScarFinder isolates scarred trajectories by suppressing thermal contributions. We validate the method on the analytically tractable spin-1 XY model, recovering the known scar dynamics, as well as the mixed field Ising model, where we capture and generalize the initial conditions previously associated with ``weak thermalization''. We then apply the method to the PXP model of Rydberg atom arrays, efficiently characterizing its mixed phase space and finding a previously unknown trajectory with nearly-perfect revival dynamics in the thermodynamic limit. Our results establish ScarFinder as a powerful, model-agnostic tool for identifying and optimizing coherent dynamics in quantum many-body systems.
20 pages, 13 figures
References in corpus (58)
- Thermalization and its mechanism for generic isolated quantum systems
- Probing many-body dynamics on a 51-atom quantum simulator
- Many-Body Physics with Individually-Controlled Rydberg Atoms
- Programmable Quantum Simulations of Spin Systems with Trapped Ions
- Matrix Product States and Projected Entangled Pair States: Concepts, Symmetries, and Theorems
- Quantum Many-Body Scars and Weak Breaking of Ergodicity
- Quantum Many-Body Scars and Hilbert Space Fragmentation: A Review of Exact Results
- Controlling many-body dynamics with driven quantum scars in Rydberg atom arrays
- Strong and weak thermalization of infinite non-integrable quantum systems
- Emergent SU(2) dynamics and perfect quantum many-body scars
- Competing density-wave orders in a one-dimensional hard-boson model
- Observing non-ergodicity due to kinetic constraints in tilted Fermi-Hubbard chains
- Quantum Many-Body Scars: A Quasiparticle Perspective
- Colloquium: Quantum and Classical Discrete Time Crystals
- Unified structure for exact towers of scar states in the AKLT and other models
- Onsager's Scars in Disordered Spin Chains
- Eta-Pairing in Hubbard Models: From Spectrum Generating Algebras to Quantum Many-Body Scars
- Observation of many-body scarring in a Bose--Hubbard quantum simulator
- Many Body Scars as a Group Invariant Sector of Hilbert Space
- Eta-pairing states as true scars in an extended Hubbard Model
- Quantum Many-Body Scars in Optical Lattices
- Disorder-Free Localization and Many-Body Quantum Scars from Magnetic Frustration
- Exact three-colored quantum scars from geometric frustration
- From tunnels to towers: quantum scars from Lie Algebras and q-deformed Lie Algebras
- Quantum scars as embeddings of weakly "broken" Lie algebra representations
- Quantum Many-Body Scar States in Two-Dimensional Rydberg Atom Arrays
- Many-body Hilbert space scarring on a superconducting processor
- Quantum many-body scars from virtual entangled pairs
- Quasi-symmetry groups and many-body scar dynamics
- Quasiparticle explanation of "weak thermalization" regime under quench in a non-integrable quantum spin chain
- A proposal for realising quantum scars in the tilted 1D Fermi-Hubbard model
- Quantum scars of bosons with correlated hopping
- Weak Ergodicity Breaking in the Schwinger Model
- Stabilizing two-dimensional quantum scars by deformation and synchronization
- The quantum Mpemba effects
- Robust quantum sensing in strongly interacting systems with many-body scars
- Extensive multipartite entanglement from su(2) quantum many-body scars
- Unified theory of local quantum many-body dynamics: Eigenoperator thermalization theorems
- Entanglement enhanced metrology with quantum many-body scars
- The fate of quantum many-body scars in the presence of disorder
- Quantum many-body scars in bipartite Rydberg arrays originate from hidden projector embedding
- Deformed Symmetry Structures and Quantum Many-body Scar Subspaces
- Quantum scars and regular eigenstates in a chaotic spinor condensate
- Observation of quantum thermalization restricted to Hilbert space fragments
- Exhaustive Characterization of Quantum Many-Body Scars using Commutant Algebras
- Asymptotic Quantum Many-Body Scars
- Quantum Many-Body Scars in Dual-Unitary Circuits
- Bridging quantum criticality via many-body scarring
- Disorder-tunable entanglement at infinite temperature
- Enhancing the effect of quantum many-body scars on dynamics by minimising the effective dimension
- Stability of the many-body scars in fermionic spin-1/2 models
- Thermalization in Krylov Basis
- Extracting Quantum Many-Body Scarred Eigenstates with Matrix Product States
- Robust quantum many-body scars in the one-dimensional spin-1 Kitaev model
- Quantum Many-Body Scars beyond the PXP model in Rydberg simulators
- Bridging quantum many-body scar and quantum integrability in Ising chains with transverse and longitudinal fields
- Mobility edges through inverted quantum many-body scarring
- Genuine quantum scars in many-body spin systems