Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward understanding strongly interacting quantum systems. Atom gas microscopes are crucial for this as they offer single site density resolution, unparalleled in other quantum many body systems. However, currently a direct measurement of local coherent currents is out of reach. In this Letter, we show how to achieve that by measuring densities that are altered in response to quenches to noninteracting dynamics, e.g., after tilting the optical lattice. For this, we establish a data analysis method solving the closed set of equations relating tunneling currents and atom number dynamics, allowing us to reliably recover the full covariance matrix, including o...
This thesis describes experiments focused on investigating out-of-equilibrium phenomena in the Bose-...
Correlation functions play an important role for the theoretical and experimental characterization o...
In this thesis we investigate strongly-correlated states of ultracold bosonic atoms in rotating ring...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
Quantum simulators allow to explore static and dynamical properties of otherwise intractable quantum...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Single-atom imaging resolution of many-body quantum systems in optical lattices is routinely achieve...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
The precise knowledge of the temperature of an ultracold lattice gas simulating a strongly correlate...
The ability to realise quantum simulation experimentally at extremely low temperature provides the c...
This thesis describes experiments focused on investigating out-of-equilibrium phenomena in the Bose-...
Correlation functions play an important role for the theoretical and experimental characterization o...
In this thesis we investigate strongly-correlated states of ultracold bosonic atoms in rotating ring...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
Quantum simulators allow to explore static and dynamical properties of otherwise intractable quantum...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Single-atom imaging resolution of many-body quantum systems in optical lattices is routinely achieve...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
Trapping ultracold atoms in optical lattices enabled the study of strongly correlated phenomena in a...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
The precise knowledge of the temperature of an ultracold lattice gas simulating a strongly correlate...
The ability to realise quantum simulation experimentally at extremely low temperature provides the c...
This thesis describes experiments focused on investigating out-of-equilibrium phenomena in the Bose-...
Correlation functions play an important role for the theoretical and experimental characterization o...
In this thesis we investigate strongly-correlated states of ultracold bosonic atoms in rotating ring...