Ultracold bosons in the vicinity of a narrow resonance: shallow dimer and recombination
arXiv:1109.3002 · doi:10.1103/PhysRevA.84.062712
Abstract
The different resonant regimes that can be achieved by using a magnetic Feshbach resonance are analyzed with a separable two-channel model. Emphasis is put on the case of narrow resonances in a region of intermediate detuning where a shallow dimer exists and an approximate law including the background scattering length for the three-body recombination rate is derived.
References in corpus (13)
- Observation of an Efimov spectrum in an atomic system
- Three-boson problem near a narrow Feshbach resonance
- Observation of an Efimov-like resonance in ultracold atom-dimer scattering
- Evidence for Universal Four-Body States Tied to an Efimov Trimer
- Feshbach resonances in ultracold K(39)
- Number of closed-channel molecules in the BEC-BCS crossover
- Analytical solution of the bosonic three-body problem
- Limits on Universality in Ultracold Three-Boson Recombination
- Three fully polarized fermions close to a p-wave Feshbach resonance
- Spectroscopy of Ultracold, Trapped Cesium Feshbach Molecules
- Excited Thomas-Efimov levels in ultracold gases
- The Efimov effect in lithium 6
- Crossover in the Efimov spectrum
Cited by in corpus (13)
- Universality of the three-body Efimov parameter at narrow Feshbach resonances
- Efimov physics beyond universality
- Finite range corrections near a Feshbach resonance and their role in the Efimov effect
- Association of Efimov trimers from a three-atom continuum
- Three-body recombination at vanishing scattering lengths in an ultracold Bose gas
- Efimov states near a Feshbach resonance and the limits of van der Waals universality at finite background scattering length
- Matching universal behavior with potential models
- Many Bosons in a Narrow Magnetic Feshbach Resonance
- Efimov scenario for overlapping narrow Feshbach resonances
- Nonexponential decay of Feshbach molecules
- Ultracold-atom collisions in atomic waveguides : A two-channel analysis
- Second-order virial expansion for an atomic gas in a harmonic waveguide
- Efimov Trimers near the Zero-crossing of a Feshbach Resonance