Determination of the ground state polarizability of $^{162}$Dy near 530 nm

Fuente: arXiv
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Main Authors: Journeaux, Alexandre, Lecomte, Maxime, Veschambre, Julie, Lepers, Maxence, Dalibard, Jean, Lopes, Raphael
Format: Preprint
Published: 2026
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_version_ 1866911565349912576
author Journeaux, Alexandre
Lecomte, Maxime
Veschambre, Julie
Lepers, Maxence
Dalibard, Jean
Lopes, Raphael
author_facet Journeaux, Alexandre
Lecomte, Maxime
Veschambre, Julie
Lepers, Maxence
Dalibard, Jean
Lopes, Raphael
contents Open-shell lanthanide atoms, and dysprosium in particular, combine a large ground-state angular momentum with dense electronic spectra, making their dynamical polarizability strongly dependent on wavelength and internal state and therefore particularly challenging to characterize accurately. This issue has become especially relevant with the recent development of single-atom trapping of dysprosium in optical-tweezer arrays, where precise knowledge of the polarizability is needed to design optimized trapping architectures. Here, we exploit the strong spin-dependent light shift near the $J'=J-1$ intercombination line at 530.306 nm to determine the background scalar and vector polarizabilities of $^{162}$Dy in its ground state near this wavelength. Our measurements quantitatively agree with atomic-structure calculations and provide new insight into the contributions of nearby transitions in a spectral region relevant to emerging dysprosium tweezer platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2604_03177
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Determination of the ground state polarizability of $^{162}$Dy near 530 nm
Journeaux, Alexandre
Lecomte, Maxime
Veschambre, Julie
Lepers, Maxence
Dalibard, Jean
Lopes, Raphael
Quantum Gases
Atomic Physics
Open-shell lanthanide atoms, and dysprosium in particular, combine a large ground-state angular momentum with dense electronic spectra, making their dynamical polarizability strongly dependent on wavelength and internal state and therefore particularly challenging to characterize accurately. This issue has become especially relevant with the recent development of single-atom trapping of dysprosium in optical-tweezer arrays, where precise knowledge of the polarizability is needed to design optimized trapping architectures. Here, we exploit the strong spin-dependent light shift near the $J'=J-1$ intercombination line at 530.306 nm to determine the background scalar and vector polarizabilities of $^{162}$Dy in its ground state near this wavelength. Our measurements quantitatively agree with atomic-structure calculations and provide new insight into the contributions of nearby transitions in a spectral region relevant to emerging dysprosium tweezer platforms.
title Determination of the ground state polarizability of $^{162}$Dy near 530 nm
topic Quantum Gases
Atomic Physics
url https://arxiv.org/abs/2604.03177