Interferometry of Efimov states in thermal gases by modulated magnetic fields

Fuente: arXiv
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Main Authors: Bougas, G., Mistakidis, S. I., Schmelcher, P., Greene, C. H., Giannakeas, P.
Format: Preprint
Published: 2023
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_version_ 1866917101050003456
author Bougas, G.
Mistakidis, S. I.
Schmelcher, P.
Greene, C. H.
Giannakeas, P.
author_facet Bougas, G.
Mistakidis, S. I.
Schmelcher, P.
Greene, C. H.
Giannakeas, P.
contents We demonstrate that an interferometer based on modulated magnetic field pulses enables precise characterization of the energies and lifetimes of Efimov trimers irrespective of the magnitude and sign of the interactions in 85Rb thermal gases. Despite thermal effects, interference fringes develop when the dark time between the pulses is varied. This enables the selective excitation of coherent superpositions of trimer, dimer and free atom states. The interference patterns possess two distinct damping timescales at short and long dark times that are either equal to or twice as long as the lifetime of Efimov trimers, respectively. Specifically, this behavior at long dark times provides an interpretation of the unusually large damping timescales reported in a recent experiment with 7Li thermal gases [Phys. Rev. Lett. 122, 200402 (2019)]. Apart from that, our results constitute a stepping stone towards a high precision few-body state interferometry for dense quantum gases.
format Preprint
id arxiv_https___arxiv_org_abs_2306_01199
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Interferometry of Efimov states in thermal gases by modulated magnetic fields
Bougas, G.
Mistakidis, S. I.
Schmelcher, P.
Greene, C. H.
Giannakeas, P.
Quantum Gases
Atomic Physics
We demonstrate that an interferometer based on modulated magnetic field pulses enables precise characterization of the energies and lifetimes of Efimov trimers irrespective of the magnitude and sign of the interactions in 85Rb thermal gases. Despite thermal effects, interference fringes develop when the dark time between the pulses is varied. This enables the selective excitation of coherent superpositions of trimer, dimer and free atom states. The interference patterns possess two distinct damping timescales at short and long dark times that are either equal to or twice as long as the lifetime of Efimov trimers, respectively. Specifically, this behavior at long dark times provides an interpretation of the unusually large damping timescales reported in a recent experiment with 7Li thermal gases [Phys. Rev. Lett. 122, 200402 (2019)]. Apart from that, our results constitute a stepping stone towards a high precision few-body state interferometry for dense quantum gases.
title Interferometry of Efimov states in thermal gases by modulated magnetic fields
topic Quantum Gases
Atomic Physics
url https://arxiv.org/abs/2306.01199