Three-body systems with large scattering length display universal phenomena associated with a discrete scaling symmetry. These phenomena include resonant enhancement of three-body loss rates when an Efimov three-body resonance is at the scattering threshold. In particular, there can be resonant peaks in the atom-dimer relaxation rate for large positive scattering length. We improve upon earlier studies and calculate the atom-dimer relaxation rate as a function of temperature using a Bose-Einstein distribution for the thermal average. As input, we use calculations of the atom-dimer scattering phase shifts from effective field theory
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We present an approach to analyze recent experimental evidences of Efimov resonant states in mixture...
We use exact four-boson scattering equations in the momentum-space framework to study the universal ...
We consider weakly bound bosonic and fermionic heteronuclear molecules (dimers) in ultracold atomic ...
13 pages, 8 figuresInternational audienceWe use the zero-range approximation to study a system of tw...
We predict the resonance-enhanced magnetic field dependence of atom-dimer relaxation and three-body ...
We have analyzed our recently-measured three-body loss rate coefficient for a Bose-Einstein condensa...
The effects of trimer continuum resonances are considered in the three-body recombination rate of a ...
We report on measurements of three-body recombination rates in an ultracold gas of 7Li atoms in the ...
Abstract – We investigate the three-body properties of two identical ↑ fermions and one dis-tinguish...
Abstract. The three-body recombination coefficient of an ultracold atomic system, together with the ...
\u3cp\u3eWe study the universality of the three-body parameters for systems relevant for ultracold q...
Ultracold quantum gases with large scattering length show resonant enhancement of three-body loss r...
Few-body effects play an important role for the understanding of ultracold quantum gases. We make us...
We consider collisional properties of weakly bound heteronuclear molecules (dimers) formed in a two-...
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We present an approach to analyze recent experimental evidences of Efimov resonant states in mixture...
We use exact four-boson scattering equations in the momentum-space framework to study the universal ...
We consider weakly bound bosonic and fermionic heteronuclear molecules (dimers) in ultracold atomic ...
13 pages, 8 figuresInternational audienceWe use the zero-range approximation to study a system of tw...
We predict the resonance-enhanced magnetic field dependence of atom-dimer relaxation and three-body ...
We have analyzed our recently-measured three-body loss rate coefficient for a Bose-Einstein condensa...
The effects of trimer continuum resonances are considered in the three-body recombination rate of a ...
We report on measurements of three-body recombination rates in an ultracold gas of 7Li atoms in the ...
Abstract – We investigate the three-body properties of two identical ↑ fermions and one dis-tinguish...
Abstract. The three-body recombination coefficient of an ultracold atomic system, together with the ...
\u3cp\u3eWe study the universality of the three-body parameters for systems relevant for ultracold q...
Ultracold quantum gases with large scattering length show resonant enhancement of three-body loss r...
Few-body effects play an important role for the understanding of ultracold quantum gases. We make us...
We consider collisional properties of weakly bound heteronuclear molecules (dimers) formed in a two-...
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We present an approach to analyze recent experimental evidences of Efimov resonant states in mixture...
We use exact four-boson scattering equations in the momentum-space framework to study the universal ...