Ultralong-range Rydberg molecules of Hg atoms

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Main Authors: Wojciechowska, Agata, Tomza, Michał, Eiles, Matthew T.
Format: Preprint
Published: 2024
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author Wojciechowska, Agata
Tomza, Michał
Eiles, Matthew T.
author_facet Wojciechowska, Agata
Tomza, Michał
Eiles, Matthew T.
contents Ultralong-range Rydberg molecules, composed of an excited Rydberg atom and a ground-state atom, are characterized by large bond lengths, dipole moments, sensitivity to external fields, and an unusual binding mechanism based on low-energy elastic electron scattering. Although Rydberg molecules formed between alkali atoms have received the most attention, the additional complexity found in atoms with more than a single valence electron poses new theoretical challenges as well as new possibilities for control and design of the molecular structure. In this paper, we extend the theory of Rydberg molecules to include the additional spin coupling of the Rydberg states of a multivalent atom. We employ this theory to describe the properties of Rydberg molecules composed of mercury atoms. We calculate the potential energy curves of both heteronuclear (Hg*Rb) and homonuclear (Hg*Hg) molecules. In the former case, we propose the realization of long-range spin entanglement and remote spin flip. In the latter, we show how long-lived metastable molecular states of Hg*Hg exist as resonances above the dissociation threshold.
format Preprint
id arxiv_https___arxiv_org_abs_2412_05025
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Ultralong-range Rydberg molecules of Hg atoms
Wojciechowska, Agata
Tomza, Michał
Eiles, Matthew T.
Atomic Physics
Quantum Physics
Ultralong-range Rydberg molecules, composed of an excited Rydberg atom and a ground-state atom, are characterized by large bond lengths, dipole moments, sensitivity to external fields, and an unusual binding mechanism based on low-energy elastic electron scattering. Although Rydberg molecules formed between alkali atoms have received the most attention, the additional complexity found in atoms with more than a single valence electron poses new theoretical challenges as well as new possibilities for control and design of the molecular structure. In this paper, we extend the theory of Rydberg molecules to include the additional spin coupling of the Rydberg states of a multivalent atom. We employ this theory to describe the properties of Rydberg molecules composed of mercury atoms. We calculate the potential energy curves of both heteronuclear (Hg*Rb) and homonuclear (Hg*Hg) molecules. In the former case, we propose the realization of long-range spin entanglement and remote spin flip. In the latter, we show how long-lived metastable molecular states of Hg*Hg exist as resonances above the dissociation threshold.
title Ultralong-range Rydberg molecules of Hg atoms
topic Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2412.05025