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Unraveling PXP Many-Body Scars through Floquet Dynamics

Statistical Mechanics 2025-02-26 v1 Quantum Gases Strongly Correlated Electrons Quantum Physics

Abstract

Quantum scars are special eigenstates of many-body systems that evade thermalization. They were first discovered in the PXP model, a well-known effective description of Rydberg atom arrays. Despite significant theoretical efforts, the fundamental origin of PXP scars remains elusive. By investigating the discretized dynamics of the PXP model as a function of the Trotter step τ\tau, we uncover a remarkable correspondence between the zero- and two-particle eigenstates of the integrable Floquet-PXP cellular automaton at τ=π/2\tau=\pi/2 and the PXP many-body scars of the time-continuous limit. Specifically, we demonstrate that PXP scars are adiabatically connected to the eigenstates of the τ=π/2\tau=\pi/2 Floquet operator. Building on this result, we propose a protocol for achieving high-fidelity preparation of PXP scars in Rydberg atom experiments.

Keywords

Cite

@article{arxiv.2312.16288,
  title  = {Unraveling PXP Many-Body Scars through Floquet Dynamics},
  author = {Giuliano Giudici and Federica Maria Surace and Hannes Pichler},
  journal= {arXiv preprint arXiv:2312.16288},
  year   = {2025}
}

Comments

6+12 pages, 4+7 figures