We use a time-dependent dynamical mean-field-hydrodynamic model to predict and study bright solitons in a degenerate fermion-fermion mixture in a quasi-one-dimensional cigar-shaped geometry using variational and numerical methods. Due to a strong Pauli-blocking repulsion among identical spin-polarized fermions at short distances there cannot be bright solitons for repulsive interspecies fermion-fermion interactions. However, stable bright solitons can be formed for a sufficiently attractive interspecies interaction. We perform a numerical stability analysis of these solitons and also demonstrate the formation of soliton trains. These fermionic solitons can be formed and studied in laboratory with present technology
We study an ultracold and dilute superfluid Bose-Fermi mixture confined in a strictly one-dimensiona...
We model the formation of bright atomic solitons due to collapse of Bose-Einstein condensates with a...
We investigate a dilute mixture of bosons and spin-polarized fermions in one-dimension. With an attr...
We use a time-dependent dynamical mean-field-hydrodynamic model to predict and study bright solitons...
We employ a time- dependent mean- field- hydrodynamic model to study the generation of bright solito...
We use a time-dependent dynamical mean-field-hydrodynamic model to study the formation of fermionic ...
Repulsive Bose-Einstein condensates, where short-range interaction is included up to the third order...
The formation of bright solitons in a Bose-Fermi mixture as a result of a competition between boson-...
Employing a time dependent mean-field-hydrodynamic model we study the generation of black solitons i...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
In this paper we consider an ultra-cold mixture of boson and fermion atoms on the basis of...
We use a time-dependent dynamical mean-field-hydrodynamic model to study the formation of fermionic ...
We characterize the collective modes of a soliton train in a quasi-one-dimensional Fermi superfluid,...
In this work we present a systematic theoretical analysis regarding dark-bright solitons and their i...
We study an ultracold and dilute superfluid Bose-Fermi mixture confined in a strictly one-dimensiona...
We model the formation of bright atomic solitons due to collapse of Bose-Einstein condensates with a...
We investigate a dilute mixture of bosons and spin-polarized fermions in one-dimension. With an attr...
We use a time-dependent dynamical mean-field-hydrodynamic model to predict and study bright solitons...
We employ a time- dependent mean- field- hydrodynamic model to study the generation of bright solito...
We use a time-dependent dynamical mean-field-hydrodynamic model to study the formation of fermionic ...
Repulsive Bose-Einstein condensates, where short-range interaction is included up to the third order...
The formation of bright solitons in a Bose-Fermi mixture as a result of a competition between boson-...
Employing a time dependent mean-field-hydrodynamic model we study the generation of black solitons i...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
In this paper we consider an ultra-cold mixture of boson and fermion atoms on the basis of...
We use a time-dependent dynamical mean-field-hydrodynamic model to study the formation of fermionic ...
We characterize the collective modes of a soliton train in a quasi-one-dimensional Fermi superfluid,...
In this work we present a systematic theoretical analysis regarding dark-bright solitons and their i...
We study an ultracold and dilute superfluid Bose-Fermi mixture confined in a strictly one-dimensiona...
We model the formation of bright atomic solitons due to collapse of Bose-Einstein condensates with a...
We investigate a dilute mixture of bosons and spin-polarized fermions in one-dimension. With an attr...