AbstractThe trajectory of the first excited Efimov state is investigated by using a renormalized zero-range three-body model for a system with two bound and one virtual two-body subsystems. The approach is applied to n–n–18C, where the n–n virtual energy and the three-body ground state are kept fixed. It is shown that such three-body excited state goes from a bound to a virtual state when the n–18C binding energy is increased. Results obtained for the n–19C elastic cross-section at low energies also show dominance of an S-matrix pole corresponding to a bound or virtual Efimov state. It is also presented a brief discussion of these findings in the context of ultracold atom physics with tunable scattering lengths
Universal aspects of few-body systems will be reviewed motivated by recent inter...
International audienceWe consider the evolution of the neutron-nucleus scattering length for the lig...
The Efimov effect was originally formulated for three particles. The underlying principle of model i...
The trajectory of the first excited Efimov state is investigated by using a renormalized zero-range ...
AbstractThe trajectory of the first excited Efimov state is investigated by using a renormalized zer...
The universal character of non-relativistic large three-body bosonic systems is addressed, with focu...
The pole trajectory of Efimov states for a three-body alpha alpha beta system with alpha alpha unbou...
International audienceThe emergence of Efimov levels in a three-body system is investigated near the...
By considering nuclear and ultracold trapped atomic systems, we review the trajectory of Efimov exci...
Low-energy neutron–19Cscattering is studied in the three-body n +n +18Cmodel using a realistic nnpot...
AbstractThe low-energy properties of the elastic s-wave scattering for the n-19C are studied near th...
We study the trajectory of Efimov states for a trapped three-boson system when the two-body scatteri...
The low-energy neutron-C-19 scattering in a neutron-neutron-core model is studied with large scatter...
We study the $$\varXi ^- nn$$ ($$S=-2,\,I=3/2,\,J^P={1/2}^+$$) three-body system using low-energy ef...
AbstractThe nuclear three-body system, with two halo neutrons very weakly coupled to a heavy core, i...
Universal aspects of few-body systems will be reviewed motivated by recent inter...
International audienceWe consider the evolution of the neutron-nucleus scattering length for the lig...
The Efimov effect was originally formulated for three particles. The underlying principle of model i...
The trajectory of the first excited Efimov state is investigated by using a renormalized zero-range ...
AbstractThe trajectory of the first excited Efimov state is investigated by using a renormalized zer...
The universal character of non-relativistic large three-body bosonic systems is addressed, with focu...
The pole trajectory of Efimov states for a three-body alpha alpha beta system with alpha alpha unbou...
International audienceThe emergence of Efimov levels in a three-body system is investigated near the...
By considering nuclear and ultracold trapped atomic systems, we review the trajectory of Efimov exci...
Low-energy neutron–19Cscattering is studied in the three-body n +n +18Cmodel using a realistic nnpot...
AbstractThe low-energy properties of the elastic s-wave scattering for the n-19C are studied near th...
We study the trajectory of Efimov states for a trapped three-boson system when the two-body scatteri...
The low-energy neutron-C-19 scattering in a neutron-neutron-core model is studied with large scatter...
We study the $$\varXi ^- nn$$ ($$S=-2,\,I=3/2,\,J^P={1/2}^+$$) three-body system using low-energy ef...
AbstractThe nuclear three-body system, with two halo neutrons very weakly coupled to a heavy core, i...
Universal aspects of few-body systems will be reviewed motivated by recent inter...
International audienceWe consider the evolution of the neutron-nucleus scattering length for the lig...
The Efimov effect was originally formulated for three particles. The underlying principle of model i...