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Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars

Publication ,  Journal Article
Zhao, L; Datla, PR; Tian, W; Aliyu, MM; Loh, H
Published in: Physical Review X
February 18, 2025

Quantum thermalization occurs in a broad class of systems from elementary particles to complex materials. Out-of-equilibrium quantum systems have long been understood to either thermalize or retain memory of their initial states, but not both. Here, we achieve the first coexistence of thermalization and memory in a quantum system, where we use both Rydberg blockade and facilitation in an atom array to engineer a fragmentation of the Hilbert space into exponentially many disjointed subspaces. We find that the kinetically constrained system yields quantum many-body scars arising from the Z_{2k} class of initial states, which generalizes beyond the Z_{2} scars previously reported in other quantum systems. When bringing multiple long-range interactions into resonance, we observe quantum thermalization restricted to Hilbert space fragments, where the thermalized system retains characteristics of the initial configuration. Intriguingly, states belonging to different subspaces do not thermalize with each other even when they have the same energy. Our work sheds light on a subtle aspect of quantum thermalization while experimentally resolving the long-standing tension between thermalization and memory. These results may be applied to control entanglement dynamics in quantum processors and quantum sensors.

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Published In

Physical Review X

DOI

EISSN

2160-3308

Publication Date

February 18, 2025

Volume

15

Issue

1

Publisher

American Physical Society (APS)

Related Subject Headings

  • 51 Physical sciences
  • 0206 Quantum Physics
  • 0204 Condensed Matter Physics
  • 0201 Astronomical and Space Sciences
 

Citation

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Zhao, L., Datla, P. R., Tian, W., Aliyu, M. M., & Loh, H. (2025). Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars. Physical Review X, 15(1). https://doi.org/10.1103/physrevx.15.011035
Zhao, Luheng, Prithvi Raj Datla, Weikun Tian, Mohammad Mujahid Aliyu, and Huanqian Loh. “Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars.” Physical Review X 15, no. 1 (February 18, 2025). https://doi.org/10.1103/physrevx.15.011035.
Zhao L, Datla PR, Tian W, Aliyu MM, Loh H. Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars. Physical Review X. 2025 Feb 18;15(1).
Zhao, Luheng, et al. “Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars.” Physical Review X, vol. 15, no. 1, American Physical Society (APS), Feb. 2025. Manual, doi:10.1103/physrevx.15.011035.
Zhao L, Datla PR, Tian W, Aliyu MM, Loh H. Observation of Quantum Thermalization Restricted to Hilbert Space Fragments and Z_{2k} Scars. Physical Review X. American Physical Society (APS); 2025 Feb 18;15(1).

Published In

Physical Review X

DOI

EISSN

2160-3308

Publication Date

February 18, 2025

Volume

15

Issue

1

Publisher

American Physical Society (APS)

Related Subject Headings

  • 51 Physical sciences
  • 0206 Quantum Physics
  • 0204 Condensed Matter Physics
  • 0201 Astronomical and Space Sciences