The dominance of interactions over kinetic energy lies at the heart of strongly correlated quantum matter, from fractional quantum Hall liquids1, to atoms in optical lattices2 and twisted bilayer graphene3. Crystalline phases often compete with correlated quantum liquids, and transitions between them occur when the energy cost of forming a density wave approaches zero. A prime example occurs for electrons in high-strength magnetic fields, where the instability of quantum Hall liquids towards a Wigner crystal4-9 is heralded by a roton-like softening of density modulations at the magnetic length7,10-12. Remarkably, interacting bosons in a gauge field are also expected to form analogous liquid and crystalline states13-21. However, combining in...
We present the exact diagonalization study of rotating Bose-condensed gas interacting via finite-ran...
We study the groundstates of rotating atomic Bose gases with non-local interactions. We focus on the...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
The dominance of interactions over kinetic energy lies at the heart of strongly correlated quantum m...
This article reviews experimental and theoretical work on Bose-Einstein condensation in quantum magn...
Quantum fluctuations become particularly relevant in highly frustrated quantum magnets and can lead ...
Engineering of synthetic magnetic flux in Bose-Einstein condensates [ Lin et al. Nature (London) 462...
Just a couple decades ago bosonic low-temperature physics was synonymous with one particular liquid ...
We create rapidly rotating Bose-Einstein condensates in the lowest Landau level by spinning up the c...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
We create rapidly rotating Bose-Einstein condensates in the lowest Landau level by spinning up the c...
Spin-orbit-coupled bosons can exhibit rich equilibrium phases at low temperature and in the presence...
We study interacting bosons on a lattice in a magnetic field. When the number of flux quanta per pl...
The experimental realization of quantum-degenerate Bose gases made of atoms with sizeable magnetic d...
Although crystallization is a ubiquitous phenomenon in nature, crystal formation and melting still r...
We present the exact diagonalization study of rotating Bose-condensed gas interacting via finite-ran...
We study the groundstates of rotating atomic Bose gases with non-local interactions. We focus on the...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
The dominance of interactions over kinetic energy lies at the heart of strongly correlated quantum m...
This article reviews experimental and theoretical work on Bose-Einstein condensation in quantum magn...
Quantum fluctuations become particularly relevant in highly frustrated quantum magnets and can lead ...
Engineering of synthetic magnetic flux in Bose-Einstein condensates [ Lin et al. Nature (London) 462...
Just a couple decades ago bosonic low-temperature physics was synonymous with one particular liquid ...
We create rapidly rotating Bose-Einstein condensates in the lowest Landau level by spinning up the c...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
We create rapidly rotating Bose-Einstein condensates in the lowest Landau level by spinning up the c...
Spin-orbit-coupled bosons can exhibit rich equilibrium phases at low temperature and in the presence...
We study interacting bosons on a lattice in a magnetic field. When the number of flux quanta per pl...
The experimental realization of quantum-degenerate Bose gases made of atoms with sizeable magnetic d...
Although crystallization is a ubiquitous phenomenon in nature, crystal formation and melting still r...
We present the exact diagonalization study of rotating Bose-condensed gas interacting via finite-ran...
We study the groundstates of rotating atomic Bose gases with non-local interactions. We focus on the...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...