In this thesis we investigate the properties of mixtures of Bose gases in one dimensions at zero temperature using quantum Monte-Carlo methods. First we investigate the limiting case of an impurity interacting with an atomic bath. We characterize the impurity, by calculating its effective mass, binding energy as well as the contact parameter between the impurity and the bath. In particular, we find that the effective mass rapidly increases to very large values when the impurity gets strongly coupled to an otherwise weakly repulsive bath. Then we describe uniform balanced mixtures with repulsive interactions. We investigate the miscibility phase diagram of the two components and find that correlations do not alter the phase diagram predicted...
In this thesis, various aspects on the theoretical description of ultracold bosonic atoms in optical...
In Lattice Quantum Chromodynamics, we calculate physical quantities on a discrete 4D Euclidean latti...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
This dissertation aims at giving a theoretical description of various applications of ultracold gase...
In this thesis, we have investigated strongly correlated bosonic gases in an optical lattice, mostly...
My dissertation treats the physics of ultracold gases, in particular of Bose-Einstein condensates wi...
The properties of mixtures of Bose-Einstein condensates at T=0 have been investigated using quantum ...
In very dilute Bose gases the full interatomic interaction can be well modeled by the s-wave scatter...
We present the complete phase diagram for one-dimensional binary mixtures of bosonic ultracold atomi...
Several models of a strongly interacting Bose gas in an optical lattice are studied within the funct...
In ultracold Fermi gases, the spatial dimension and the number of particles involved in interactions...
The main objective of this thesis is to examine how the full configuration interaction quantum Monte...
This thesis deals with the Bose gas at large scattering lengths using quantum path-integral Monte Ca...
Many-body quantum systems provide an interesting playground for experimentalists and theorists alike...
By using exact quantum Monte Carlo methods we calculate the ground-state properties of the liquid ph...
In this thesis, various aspects on the theoretical description of ultracold bosonic atoms in optical...
In Lattice Quantum Chromodynamics, we calculate physical quantities on a discrete 4D Euclidean latti...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
This dissertation aims at giving a theoretical description of various applications of ultracold gase...
In this thesis, we have investigated strongly correlated bosonic gases in an optical lattice, mostly...
My dissertation treats the physics of ultracold gases, in particular of Bose-Einstein condensates wi...
The properties of mixtures of Bose-Einstein condensates at T=0 have been investigated using quantum ...
In very dilute Bose gases the full interatomic interaction can be well modeled by the s-wave scatter...
We present the complete phase diagram for one-dimensional binary mixtures of bosonic ultracold atomi...
Several models of a strongly interacting Bose gas in an optical lattice are studied within the funct...
In ultracold Fermi gases, the spatial dimension and the number of particles involved in interactions...
The main objective of this thesis is to examine how the full configuration interaction quantum Monte...
This thesis deals with the Bose gas at large scattering lengths using quantum path-integral Monte Ca...
Many-body quantum systems provide an interesting playground for experimentalists and theorists alike...
By using exact quantum Monte Carlo methods we calculate the ground-state properties of the liquid ph...
In this thesis, various aspects on the theoretical description of ultracold bosonic atoms in optical...
In Lattice Quantum Chromodynamics, we calculate physical quantities on a discrete 4D Euclidean latti...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...