The occupation of more than one single-particle state, and hence the emergence of fragmentation, is a many-body phenomenon occurring for systems of spatially confined strongly interacting bosons. In the present study, we investigate the effect of the range of the interparticle interactions on the fragmentation degree of one-and two-dimensional systems in single wells. We solve the full many-body Schrodinger equation of the system using the recursive implementation of the multiconfigurational time-dependent Hartree for bosons method (R-MCTDHB). The dependence of the degree of fragmentation on dimensionality, particle number, areal or line density, and interaction strength is assessed. For contact interactions, it is found that the fragmentat...
The theoretical investigation of rotating Bose-Einstein condensates has mainly focused on the emerge...
We study the full counting statistics (FCS) of quantum gases in samples of thousands of interacting ...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
International audienceThe occupation of more than one single-particle state, and hence the emergence...
We present a systematic study of the phenomena of number squeezing and fragmentation for a repulsive...
In this paper we discuss some aspects of fragmented condensation from a mathematical perspective. We...
In this paper, the multiconfigurational time-dependent Hartree for bosons (MCTDHB) method is derived...
We present a theoretical study of the ground state of a Bose-Einstein condensate with repulsive inte...
We present path integral ground state (PIGS) quantum Monte Carlo calculations for the ground state (...
Condensation of bosons in Bose-Einstein condensates or Cooper pairs in superconductors refers to a m...
We consider a Bose-Hubbard trimer, i.e. an ultracold Bose gas populating three quantum states. The l...
International audienceIn this paper, the multiconfigurational time-dependent Hartree for bosons (MCT...
The ground state and its structure for a rotating, harmonically trapped N-boson system with a weak r...
Closed generic quantum many-body systems may fail to thermalize under certain conditions even after ...
Comments on what is meant by localization added. The conjecture on the localization/delocalization t...
The theoretical investigation of rotating Bose-Einstein condensates has mainly focused on the emerge...
We study the full counting statistics (FCS) of quantum gases in samples of thousands of interacting ...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
International audienceThe occupation of more than one single-particle state, and hence the emergence...
We present a systematic study of the phenomena of number squeezing and fragmentation for a repulsive...
In this paper we discuss some aspects of fragmented condensation from a mathematical perspective. We...
In this paper, the multiconfigurational time-dependent Hartree for bosons (MCTDHB) method is derived...
We present a theoretical study of the ground state of a Bose-Einstein condensate with repulsive inte...
We present path integral ground state (PIGS) quantum Monte Carlo calculations for the ground state (...
Condensation of bosons in Bose-Einstein condensates or Cooper pairs in superconductors refers to a m...
We consider a Bose-Hubbard trimer, i.e. an ultracold Bose gas populating three quantum states. The l...
International audienceIn this paper, the multiconfigurational time-dependent Hartree for bosons (MCT...
The ground state and its structure for a rotating, harmonically trapped N-boson system with a weak r...
Closed generic quantum many-body systems may fail to thermalize under certain conditions even after ...
Comments on what is meant by localization added. The conjecture on the localization/delocalization t...
The theoretical investigation of rotating Bose-Einstein condensates has mainly focused on the emerge...
We study the full counting statistics (FCS) of quantum gases in samples of thousands of interacting ...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...