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Casimir-Polder interactions of S-state Rydberg atoms with graphene

Wongcharoenbhorn, K.; Koller, C.; Fromhold, T. M.; Li, W.

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Authors

C. Koller

WEIBIN LI WEIBIN.LI@NOTTINGHAM.AC.UK
Associate Professor



Abstract

We investigate the thermal Casimir-Polder (CP) potential of 87Rb atoms in Rydberg nS-states near single- and double-layer graphene, and briefly look into the lifetimes near graphene-hexagonal boron nitride (hBN) multilayered structures. The dependence of the CP potential on parameters such as atom-surface distance, temperature, principal quantum number n, and graphene Fermi energy are explored. Through large-scale numerical simulations, we show that, in the nonretarded regime, the CP potential is dominated by the nonresonant and evanescent-wave terms which are monotonic, and that, in the retarded regime, the CP potential exhibits spatial oscillations. We identify that the most important contributions to the resonant component of the CP potential come from the nS-nP and nS-(n-1)P transitions. Scaling of the CP potential as a function of the principal quantum number and temperature is obtained. A heterostructure comprising hexagonal boron nitride layers sandwiched between two graphene layers is also studied. When the boron nitride layer is sufficiently thin, the CP potential can be weakened by changing the Fermi energy of the top graphene layer. Our study provides insights for understanding and controlling CP potentials experienced by Rydberg atoms near single- and multilayer graphene-based van der Waals heterostructures.

Citation

Wongcharoenbhorn, K., Koller, C., Fromhold, T. M., & Li, W. (2023). Casimir-Polder interactions of S-state Rydberg atoms with graphene. Physical Review A, 107(4), Article 043308. https://doi.org/10.1103/PhysRevA.107.043308

Journal Article Type Article
Acceptance Date Mar 24, 2023
Online Publication Date Apr 10, 2023
Publication Date 2023-04
Deposit Date Mar 25, 2023
Publicly Available Date Apr 10, 2023
Journal Physical Review A
Print ISSN 2469-9926
Electronic ISSN 2469-9934
Publisher American Physical Society
Peer Reviewed Peer Reviewed
Volume 107
Issue 4
Article Number 043308
DOI https://doi.org/10.1103/PhysRevA.107.043308
Keywords Casimir effect & related phenomena; Cooling & trapping; Rydberg atoms & molecules; Ultracold gases; Polarizability; Dipole approximation
Public URL https://nottingham-repository.worktribe.com/output/18867274
Publisher URL https://journals.aps.org/pra/abstract/10.1103/PhysRevA.107.043308

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