Finite Range Effects in Energies and Recombination Rates of Three Identical Bosons
arXiv:1212.1398 · doi:10.1088/0953-4075/46/7/075301
Abstract
We investigate finite-range effects in systems with three identical bosons. We calculate recombination rates and bound state spectra using two different finite-range models that have been used recently to describe the physics of cold atomic gases near Feshbach resonances where the scattering length is large. The models are built on contact potentials which take into account finite range effects; one is a two-channel model and the other is an effective range expansion model implemented through the boundary condition on the three-body wave function when two of the particles are at the same point in space. We compare the results with the results of the ubiquitous single-parameter zero-range model where only the scattering length is taken into account. Both finite range models predict variations of the well-known geometric scaling factor 22.7 that arises in Efimov physics. The threshold value at negative scattering length for creation of a bound trimer moves to higher or lower values depending on the sign of the effective range compared to the location of the threshold for the single-parameter zero-range model. Large effective ranges, corresponding to narrow resonances, are needed for the reduction to have any noticeable effect.
16 pages, 7 figures, published version
References in corpus (8)
- Observation of an Efimov spectrum in an atomic system
- Observation of universality in ultracold 7Li three-body recombination
- Radio Frequency Association of Efimov Trimers
- Analytical solution of the bosonic three-body problem
- Range Corrections to Three-Body Observables near a Feshbach Resonance
- Efimov Physics and the Three-Body Parameter within a Two-Channel Framework
- Universal three-body parameter in ultracold 4He*
- Conditions for Efimov Physics for Finite Range Potentials
Cited by in corpus (5)
- Universal van der Waals Physics for Three Ultracold Atoms
- Three-body recombination of two-component cold atomic gases into deep dimers in an optical model
- Efimov states in Li-Cs mixtures within a minimal model
- Window for Efimov physics for few-body systems with finite-range interactions
- Finite-range bias in fitting three-body loss to the zero-range model