At low temperature, a quasi-one-dimensional ensemble of atoms with an attractive interaction forms a bright soliton. When exposed to a weak and smooth external potential, the shape of the soliton is hardly modified, but its center-of-mass motion is affected. We show that in a spatially correlated disordered potential, the quantum motion of a bright soliton displays Anderson localization. The localization length can be much larger than the soliton size and could be observed experimentally
We consider the phase coherent transport of a quasi-one-dimensional beam of Bose-Einstein condensed ...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
We discovered unique Anderson localization behaviors of pseudospin systems in a 1D disordered potent...
At very low temperature, a quasi-one-dimensional ensemble of atoms with attractive interactions tend...
The center of mass of a bright soliton in a Bose-Einstein condensate may reveal Anderson localizatio...
We study the affinities between the shape of the bright soliton of the one-dimensional nonlinear Sch...
We study Anderson localization of single particles in continuous, correlated, one-dimensional disord...
International audienceWe study Anderson localization of ultracold atoms in weak, one-dimensional spe...
We theoretically study the Anderson localization of a matter wave packet in a one-dimensional disord...
In this work we study Anderson localization of quantum states in different kind of disordered media....
We investigate, both experimentally and theoretically, possible routes towards Anderson-like localiz...
We theoretically demonstrate features of Anderson localization in a Tonks-Girardeau gas confined in ...
We provide an analytic theory of Anderson localization on a lattice with a weak short-range correlat...
We report a study of three-dimensional (3D) localization of ultracold atoms suspended against gravit...
We present an experimental signature of the Anderson localisation of microcavity polaritons, and pro...
We consider the phase coherent transport of a quasi-one-dimensional beam of Bose-Einstein condensed ...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
We discovered unique Anderson localization behaviors of pseudospin systems in a 1D disordered potent...
At very low temperature, a quasi-one-dimensional ensemble of atoms with attractive interactions tend...
The center of mass of a bright soliton in a Bose-Einstein condensate may reveal Anderson localizatio...
We study the affinities between the shape of the bright soliton of the one-dimensional nonlinear Sch...
We study Anderson localization of single particles in continuous, correlated, one-dimensional disord...
International audienceWe study Anderson localization of ultracold atoms in weak, one-dimensional spe...
We theoretically study the Anderson localization of a matter wave packet in a one-dimensional disord...
In this work we study Anderson localization of quantum states in different kind of disordered media....
We investigate, both experimentally and theoretically, possible routes towards Anderson-like localiz...
We theoretically demonstrate features of Anderson localization in a Tonks-Girardeau gas confined in ...
We provide an analytic theory of Anderson localization on a lattice with a weak short-range correlat...
We report a study of three-dimensional (3D) localization of ultracold atoms suspended against gravit...
We present an experimental signature of the Anderson localisation of microcavity polaritons, and pro...
We consider the phase coherent transport of a quasi-one-dimensional beam of Bose-Einstein condensed ...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
We discovered unique Anderson localization behaviors of pseudospin systems in a 1D disordered potent...