Transferring vibrational states of trapped atoms via a Rydberg electron

Fuente: arXiv
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Main Authors: Pendse, Abhijit, Wüster, Sebastian, Eiles, Matthew T., Eisfeld, Alexander
Format: Preprint
Published: 2024
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author Pendse, Abhijit
Wüster, Sebastian
Eiles, Matthew T.
Eisfeld, Alexander
author_facet Pendse, Abhijit
Wüster, Sebastian
Eiles, Matthew T.
Eisfeld, Alexander
contents We show theoretically that it is possible to coherently transfer vibrational excitation between trapped neutral atoms over a micrometer apart. To this end we consider three atoms, where two are in the electronic ground state and one is excited to a Rydberg state whose electronic orbital overlaps with the positional wave functions of the two ground-state atoms. The resulting scattering of the Rydberg electron with the ground-state atoms provides the interaction required to transfer vibrational excitation from one trapped atom to the other. By numerically investigating the dependence of the transfer dynamics on the distance between traps and their relative frequencies we find that there is a "sweet spot" where the transfer of a vibrational excitation is nearly perfect and fast compared to the Rydberg lifetime. We investigate the robustness of this scenario with respect to changes of the parameters. In addition, we derive a intuitive effective Hamiltonian which explains the observed dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19016
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Transferring vibrational states of trapped atoms via a Rydberg electron
Pendse, Abhijit
Wüster, Sebastian
Eiles, Matthew T.
Eisfeld, Alexander
Atomic Physics
Quantum Gases
Quantum Physics
We show theoretically that it is possible to coherently transfer vibrational excitation between trapped neutral atoms over a micrometer apart. To this end we consider three atoms, where two are in the electronic ground state and one is excited to a Rydberg state whose electronic orbital overlaps with the positional wave functions of the two ground-state atoms. The resulting scattering of the Rydberg electron with the ground-state atoms provides the interaction required to transfer vibrational excitation from one trapped atom to the other. By numerically investigating the dependence of the transfer dynamics on the distance between traps and their relative frequencies we find that there is a "sweet spot" where the transfer of a vibrational excitation is nearly perfect and fast compared to the Rydberg lifetime. We investigate the robustness of this scenario with respect to changes of the parameters. In addition, we derive a intuitive effective Hamiltonian which explains the observed dynamics.
title Transferring vibrational states of trapped atoms via a Rydberg electron
topic Atomic Physics
Quantum Gases
Quantum Physics
url https://arxiv.org/abs/2412.19016