A fundamental question in many-body physics is how closed quantum systems reach equilibrium. We address this question experimentally and theoretically in an ultracold large-spin Fermi gas where we find a complex interplay between internal and motional degrees of freedom. The fermions are initially prepared far from equilibrium with only a few spin states occupied. The subsequent dynamics leading to redistribution among all spin states is observed experimentally and simulated theoretically using a kinetic Boltzmann equation with full spin coherence. The latter is derived microscopically and provides good agreement with experimental data without any free parameters. We identify several collisional processes that occur on different time scales...
We study theoretically the far-from-equilibrium relaxation dynamics of spin spiral states in the thr...
We investigate the decoherence of a spin 1/2 subsystem weakly coupled to an environment of many spin...
The interplay between spin and motional degrees of freedom in interacting electron systems has been ...
We study theoretically the far-from-equilibrium relaxation dynamics of spin spiral states in the thr...
This thesis summarizes experimental work investigating strongly interacting Fermi gases in two and t...
We discuss the theory of spin waves in non-degenerate ultra-cold gases, and compare various methods ...
The study of out-of-equilibrium dynamics in ultra-cold gases is a new and exciting field, driven lar...
We discuss the theory of spin waves in non-degenerate ultra-cold gases, and compare various methods ...
We study the transverse spin dynamics of trapped polarized Fermi gases in the high-temperature limit...
The long time approach to statistical equilibrium of a spin system, isolated from the lattice vibrat...
The density dependence of nuclear spin relaxation in polyatomic gases is studied theoretically. In p...
The density dependence of nuclear spin relaxation in polyatomic gases is studied theoretically. In p...
We study the dynamics of a particle in continuous time and space, the displacement of which is gover...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
We study theoretically the far-from-equilibrium relaxation dynamics of spin spiral states in the thr...
We investigate the decoherence of a spin 1/2 subsystem weakly coupled to an environment of many spin...
The interplay between spin and motional degrees of freedom in interacting electron systems has been ...
We study theoretically the far-from-equilibrium relaxation dynamics of spin spiral states in the thr...
This thesis summarizes experimental work investigating strongly interacting Fermi gases in two and t...
We discuss the theory of spin waves in non-degenerate ultra-cold gases, and compare various methods ...
The study of out-of-equilibrium dynamics in ultra-cold gases is a new and exciting field, driven lar...
We discuss the theory of spin waves in non-degenerate ultra-cold gases, and compare various methods ...
We study the transverse spin dynamics of trapped polarized Fermi gases in the high-temperature limit...
The long time approach to statistical equilibrium of a spin system, isolated from the lattice vibrat...
The density dependence of nuclear spin relaxation in polyatomic gases is studied theoretically. In p...
The density dependence of nuclear spin relaxation in polyatomic gases is studied theoretically. In p...
We study the dynamics of a particle in continuous time and space, the displacement of which is gover...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
We study theoretically the far-from-equilibrium relaxation dynamics of spin spiral states in the thr...
We investigate the decoherence of a spin 1/2 subsystem weakly coupled to an environment of many spin...
The interplay between spin and motional degrees of freedom in interacting electron systems has been ...