We use the functional renormalization group (FRG) to derive analytical expressions for thermodynamic observables (density, pressure, entropy, and compressibility) as well as for single-particle properties (wave-function renormalization and effective mass) of interacting bosons in two dimensions as a function of temperature T and chemical potential μ. We focus on the quantum disordered and the quantum critical regime close to the dilute Bose gas quantum critical point. Our approach is based on a truncated vertex expansion of the hierarchy of FRG flow equations and the decoupling of the two-body contact interaction in the particle-particle channel using a suitable Hubbard-Stratonovich transformation. Our analytic FRG results extend previous a...
We study Bose-Einstein condensation (BEC) in three-dimensional two-component bosonic gases, characte...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
One of the most promising applications of ultracold gases in optical lattices is the possibility to ...
We use the functional renormalization group (FRG) to derive analytical expressions for thermodynamic...
We present a renormalization group construction of a weakly interacting Bose gas at zero temperature...
DoctoralWe study the quantum phase transition from the superfluid to the Mott insu- lator in the fra...
We investigate the universal thermodynamics of the two-component one-dimensional Bose gas with conta...
Abstract – We derive the equation of state of a two-dimensional Bose gas in an optical lattice in th...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
We study the Berezinskii-Kosterlitz-Thouless transition in a weakly interacting 2D quantum Bose gas ...
The two-dimensional XY and Heisenberg models are studied with a quantum-mechanical generalization of...
The renormalization group approach to phase transitions is used to study the mechanism leading to th...
We study Bose-Einstein condensation (BEC) in three-dimensional two-component bosonic gases, characte...
We study Bose-Einstein condensation (BEC) in three-dimensional two-component bosonic gases, characte...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
One of the most promising applications of ultracold gases in optical lattices is the possibility to ...
We use the functional renormalization group (FRG) to derive analytical expressions for thermodynamic...
We present a renormalization group construction of a weakly interacting Bose gas at zero temperature...
DoctoralWe study the quantum phase transition from the superfluid to the Mott insu- lator in the fra...
We investigate the universal thermodynamics of the two-component one-dimensional Bose gas with conta...
Abstract – We derive the equation of state of a two-dimensional Bose gas in an optical lattice in th...
We study the three-dimensional atomic Bose gas using renormalization group techniques. Using our kno...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
We report results of quantum Monte Carlo simulations of the Bose-Hubbard model in three dimensions. ...
We study the Berezinskii-Kosterlitz-Thouless transition in a weakly interacting 2D quantum Bose gas ...
The two-dimensional XY and Heisenberg models are studied with a quantum-mechanical generalization of...
The renormalization group approach to phase transitions is used to study the mechanism leading to th...
We study Bose-Einstein condensation (BEC) in three-dimensional two-component bosonic gases, characte...
We study Bose-Einstein condensation (BEC) in three-dimensional two-component bosonic gases, characte...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
One of the most promising applications of ultracold gases in optical lattices is the possibility to ...