English

Phonon-assisted coherent transport of excitations in Rydberg-dressed atom arrays

Quantum Gases 2025-07-31 v2 Atomic Physics Quantum Physics

Abstract

Polarons, which arise from the self-trapping interaction between electrons and lattice distortions in a solid, have been known and extensively investigated for nearly a century. Nevertheless, the study of polarons continues to be an active and evolving field, with ongoing advancements in both fundamental understanding and practical applications. Here, we present a microscopic model that exhibits a diverse range of dynamic behavior, arising from the intricate interplay between two excitation-phonon coupling terms. The derivation of the model is based on an experimentally feasible Rydberg-dressed system with dipole-dipole interactions, making it a promising candidate for realization in a Rydberg atoms quantum simulator. Remarkably, our analysis reveals a growing asymmetry in Bloch oscillations, leading to a macroscopic transport of non-spreading excitations under a constant force. Moreover, we compare the behavior of excitations, when coupled to either acoustic or optical phonons, and demonstrate the robustness of our findings against on-site random potential. Overall, this work contributes to the understanding of polaron dynamics with their potential applications in coherent quantum transport and offers valuable insights for research on Rydberg-based quantum systems.

Keywords

Cite

@article{arxiv.2307.04471,
  title  = {Phonon-assisted coherent transport of excitations in Rydberg-dressed atom arrays},
  author = {Arkadiusz Kosior and Servaas Kokkelmans and Maciej Lewenstein and Jakub Zakrzewski and Marcin Płodzień},
  journal= {arXiv preprint arXiv:2307.04471},
  year   = {2025}
}

Comments

The Author Accepted Manuscript (AAM); 7 figures