Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum many-body systems. However, despite the high level of control in modern experiments, not all observables of interest are easily accessible. This thesis aims at establishing protocols to measure currently elusive static and dynamic properties of quantum systems. The experimental feasibility of these schemes is illustrated by means of numerical simulations for relevant applications in many-body physics and quantum simulation. In particular, we introduce a general method for measuring dynamical correlations based on non-Hermitian linear response. This enables unbiased tests of the famous fluctuation-dissipation relation as a probe of thermali...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
I present the work done during my PhD in the field of quantum gases, metrology, and thermodynamics, ...
Many interesting physical systems have one thing in common. Their complexity makes it impossible to ...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Recent technological advances in ultra-cold atom experiments have triggered strong efforts to develo...
Quantum simulators allow to explore static and dynamical properties of otherwise intractable quantum...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
This thesis investigates thermalisation, correlations and entanglement in Bose-Einstein condensates....
We present a non-destructive method to probe a complex quantum system using multiple impurity atoms ...
We present a non-destructive method to probe a complex quantum system using multiple impurity atoms ...
In quantum physics, measurement exhibits fundamentally different behaviour to the classical case, ha...
In quantum physics, measurement exhibits fundamentally different behaviour to the classical case, ha...
Quantum many-body systems are characterized by their correlations. While equal-time correlators and ...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
I present the work done during my PhD in the field of quantum gases, metrology, and thermodynamics, ...
Many interesting physical systems have one thing in common. Their complexity makes it impossible to ...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Cold-atom quantum simulators offer unique possibilities to prepare, manipulate, and probe quantum ma...
Recent technological advances in ultra-cold atom experiments have triggered strong efforts to develo...
Quantum simulators allow to explore static and dynamical properties of otherwise intractable quantum...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
This thesis investigates thermalisation, correlations and entanglement in Bose-Einstein condensates....
We present a non-destructive method to probe a complex quantum system using multiple impurity atoms ...
We present a non-destructive method to probe a complex quantum system using multiple impurity atoms ...
In quantum physics, measurement exhibits fundamentally different behaviour to the classical case, ha...
In quantum physics, measurement exhibits fundamentally different behaviour to the classical case, ha...
Quantum many-body systems are characterized by their correlations. While equal-time correlators and ...
Quantum simulations with ultracold atoms in optical lattices open up an exciting path toward underst...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
I present the work done during my PhD in the field of quantum gases, metrology, and thermodynamics, ...
Many interesting physical systems have one thing in common. Their complexity makes it impossible to ...