First observation of Π-symmetry ultralong-range Rydberg molecules, identified via Zeeman-like multiplet structure and an approximately (n-μ)^{-11} binding-energy scaling.
Stark spectroscopy of Rydberg atoms in an atom-ion hybrid trap
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abstract
We report on Rydberg spectroscopy of ultracold atoms in an atom-ion hybrid trap for probing the electric fields in a mixture of atoms and ions. We obtain spectra which exhibit excitation gaps corresponding to avoided level crossings in the Stark map. From these measurements we can conclude that the ground state atoms experience electrical fields of up to 250 V/cm. There is, however, a difficulty in interpreting the results, because some data indicate that the electrical fields are produced by the ions while other data indicate that they stem from the Paul trap. We discuss possible scenarios for explaining the measured data, provide first measurements to check these scenarios, and propose methods to finally solve this puzzle.
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physics.atom-ph 1years
2026 1verdicts
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Observation of $\Pi$-symmetry ultralong-range Rydberg molecules
First observation of Π-symmetry ultralong-range Rydberg molecules, identified via Zeeman-like multiplet structure and an approximately (n-μ)^{-11} binding-energy scaling.