Quantum many-body scars from unstable periodic orbits
arXiv:2401.06848 · doi:10.1103/PhysRevB.110.144302
Abstract
Unstable periodic orbits (UPOs) play a key role in the theory of chaos, constituting the "skeleton" of classical chaotic systems and "scarring" the eigenstates of the corresponding quantum system. Recently, nonthermal many-body eigenstates embedded in an otherwise thermal spectrum have been identified as a many-body generalization of quantum scars. The latter, however, are not clearly associated to a chaotic phase space, and the connection between the single- and many-body notions of quantum scars remains therefore incomplete. Here, we find the first quantum many-body scars originating from UPOs of a chaotic phase space. Remarkably, these states verify the eigenstate thermalization hypothesis, and we thus refer to them as thermal quantum many-body scars. While they do not preclude thermalization, their spectral structure featuring approximately equispaced towers of states yields an anomalous oscillatory dynamics preceding thermalization for wavepackets initialized on an UPO. Remarkably, our model hosts both types of scars, thermal and nonthermal, and allows to study the crossover between the two. Our work illustrates the fundamental principle of classical-quantum correspondence in a many-body system, and its limitations.
15 pages, 8 figures
References in corpus (22)
- Thermalization and its mechanism for generic isolated quantum systems
- Probing many-body dynamics on a 51-atom quantum simulator
- The distribution of the ratio of consecutive level spacings in random matrix ensembles
- Quantum Many-Body Scars and Weak Breaking of Ergodicity
- Quantum Many-Body Scars and Hilbert Space Fragmentation: A Review of Exact Results
- QuSpin: a Python Package for Dynamics and Exact Diagonalisation of Quantum Many Body Systems part I: spin chains
- Emergent SU(2) dynamics and perfect quantum many-body scars
- Quantum Many-Body Scars: A Quasiparticle Perspective
- 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 Hilbert space scarring on a superconducting processor
- Flat Band Quantum Scar
- A proposal for realising quantum scars in the tilted 1D Fermi-Hubbard model
- Weak Ergodicity Breaking in the Schwinger Model
- Quantum Lissajous Scars
- Genuine many-body quantum scars along unstable modes in Bose-Hubbard systems
- Controllable quantum scars in semiconductor quantum dots
- Quantum scars and regular eigenstates in a chaotic spinor condensate
- Coherence dynamics of kicked Bose-Hubbard dimers: Interferometric signatures of chaos
- Fingerprint of chaos and quantum scars in kicked Dicke model: An out-of-time-order correlator study
- Classical route to ergodicity and scarring in collective quantum systems
- Embedding semiclassical periodic orbits into chaotic many-body Hamiltonians
Cited by in corpus (9)
- Genuine quantum scars in many-body spin systems
- Observation of ergodicity breaking and quantum many-body scars in spinor gases
- How to seed ergodic dynamics of interacting bosons under conditions of many-body quantum chaos
- Quantum trails and memory effects in the phase space of chaotic quantum systems
- Quantum Many-Body Scars in Few-Body Dipole-Dipole Interactions
- Antiscarring from eigenstate stacking in a chaotic spinor condensate
- Classical periodic trajectories and quantum scars in many-spin systems
- Exploring the properties of quantum scars in a toy model
- Finding periodic orbits in projected quantum many-body dynamics