2017
DOI: 10.1103/physreva.95.032707
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Efimov–van der Waals universality for ultracold atoms with positive scattering lengths

Abstract: We study the universality of the three-body parameters for systems relevant for ultracold quantum gases with positive s-wave two-body scattering lengths. Our results account for finite-range effects and their universality is tested by changing the number of deeply bound diatomic states supported by our interaction model. We find that the physics controlling the values of the three-body parameters associated with the ground and excited Efimov states is constrained by a variational principle and can be strongly … Show more

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Cited by 33 publications
(52 citation statements)
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“…The detailed behavior of the interactions at small distances therefore does not play a role. This result has been confirmed in a number of papers, in part also using different methods [38,[42][43][44][45][46][47].…”
Section: Introductionsupporting
confidence: 56%
“…The detailed behavior of the interactions at small distances therefore does not play a role. This result has been confirmed in a number of papers, in part also using different methods [38,[42][43][44][45][46][47].…”
Section: Introductionsupporting
confidence: 56%
“…20. Three-body effective potentials (in van der Waals units) for the BBB (J π = 0 + ) system with atoms interacting via a Lennard-Jones potential tuned to give a = ∞ and no deeply bound states [215][216][217]. The relevant attractive 1 R 2 effective potential for Efimov physics is repulsive for distances R ≲ 2r vdW , preventing atoms from probing the details of the interaction (see inset).…”
Section: B Universality Of the Three-body Parametermentioning
confidence: 99%
“…The results for the relevant three-body parameters obtained from averaging the results of Ref. [217], using a different number of diatomic states, are listed in Table V. The results from Ref.…”
Section: B Universality Of the Three-body Parametermentioning
confidence: 99%
“…From the theory side, the universality of the 3BP is predicted to weaken for a > 0 [38][39][40][41][42]. Moreover, it predicts that the first excited Efimov level avoids merging with the atom-dimer continuum due to various finite range effects [41]. Despite continuous theoretical interest, experimental progress is hindered due to inherent limitations of the currently available experimental techniques.In a few previous experiments a limited range of the first excited Efimov energy level has been probed by RF association of distinguishable fermions [43,44] and homonuclear bosons [34].…”
mentioning
confidence: 99%