Publication | Open Access
Universal Three-Body Parameter in Heteronuclear Atomic Systems
96
Citations
28
References
2012
Year
EngineeringNuclear PhysicsComputational ChemistryNew UniversalityUniversal Three-body ParameterUltracold AtomUniversal 3BpBiophysicsHigh-energy Nuclear ReactionPhysicsAtomic PhysicsWeak InteractionPhysical ChemistryQuantum SolidQuantum ChemistryEfimov PhysicsAb-initio MethodNatural SciencesCondensed Matter PhysicsApplied PhysicsMany-body Problem
In Efimov physics, a three-body parameter (3BP), previously regarded as nonuniversal, uniquely defines bound and scattering properties of three particles. A universal 3BP, however, has been recently shown in experiments and theory in ultracold homonuclear gases. Our present study further predicts a universal 3BP for heteronuclear atomic systems near broad Feshbach resonances and provides physical interpretations for its origin. We show that for a system composed of two light and one heavy atom, the physical origin of the universal 3BP is similar to the homonuclear case, while for systems composed by one light and two heavy atoms, the universality of the 3BP is now mostly controlled by the heavy-heavy interatomic properties. This new universality is explained by the universal properties of the van der Waals interactions in a simple Born-Oppenheimer picture. Finally, we show the numerically determined 3BPs for some combinations of alkali atoms used in ultracold experiments.
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