The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics which occurs when a Fermi sea is locally quenched by the sudden switching of a scattering potential, leading to a brutal disturbance of its ground state. We demonstrate that the effect can be seen in the controllable domain of ultracold trapped gases by providing an analytic description of the out-of-equilibrium response to an atomic impurity, both at zero and at finite temperature. Furthermore, we link the transient behavior of the gas to the decoherence of the impurity, and to the degree of the non-Markovian nature of its dynamics
The superfluid-insulator transition of bosons is strongly modified by the presence of fermions. Thro...
We present a theoretical study of the dynamical behavior of a gas made of ultracold fermionic atoms,...
We study non-equilibrium and strongly-correlated dynamics in two contexts. We begin by analysing qua...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
We investigate the behavior of a two-level atom coupled to a one-dimensional, ultracold Fermi gas. T...
We analyze the non-Markovian character of the dynamics of an open two-level atom interacting with a ...
The recent experimental realization of strongly imbalanced mixtures of ultracold atoms opens new pos...
We discuss the orthogonality catastrophe between the ground states of the unperturbed and perturbed ...
For generic mesoscopic systems like quantum dots or nanoparticles, we study the Anderson orthogonali...
For generic mesoscopic systems, such as quantum dots or nanoparticles, we study the Anderson orthogo...
We address the phenomenon of statistical orthogonality catastrophe in insulating disordered systems....
10 pages, 8 figuresFor generic mesoscopic systems like quantum dots or nanoparticles, we study the A...
We present an analog of the phenomenon of orthogonality catastrophe in quantum many-body systems sub...
The superfluid-insulator transition of bosons is strongly modified by the presence of Fermions. Thro...
The superfluid-insulator transition of bosons is strongly modified by the presence of fermions. Thro...
We present a theoretical study of the dynamical behavior of a gas made of ultracold fermionic atoms,...
We study non-equilibrium and strongly-correlated dynamics in two contexts. We begin by analysing qua...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
We investigate the behavior of a two-level atom coupled to a one-dimensional, ultracold Fermi gas. T...
We analyze the non-Markovian character of the dynamics of an open two-level atom interacting with a ...
The recent experimental realization of strongly imbalanced mixtures of ultracold atoms opens new pos...
We discuss the orthogonality catastrophe between the ground states of the unperturbed and perturbed ...
For generic mesoscopic systems like quantum dots or nanoparticles, we study the Anderson orthogonali...
For generic mesoscopic systems, such as quantum dots or nanoparticles, we study the Anderson orthogo...
We address the phenomenon of statistical orthogonality catastrophe in insulating disordered systems....
10 pages, 8 figuresFor generic mesoscopic systems like quantum dots or nanoparticles, we study the A...
We present an analog of the phenomenon of orthogonality catastrophe in quantum many-body systems sub...
The superfluid-insulator transition of bosons is strongly modified by the presence of Fermions. Thro...
The superfluid-insulator transition of bosons is strongly modified by the presence of fermions. Thro...
We present a theoretical study of the dynamical behavior of a gas made of ultracold fermionic atoms,...
We study non-equilibrium and strongly-correlated dynamics in two contexts. We begin by analysing qua...