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Simone Hamerla

Interaction Quenches in Fermionic Hubbard Models


Dynamics of Quenched Fermions in One and Two Dimensions
2014. 216 S. 220 mm
Verlag/Jahr: SÜDWESTDEUTSCHER VERLAG FÜR HOCHSCHULSCHRIFTEN 2014
ISBN: 3-8381-3538-5 (3838135385)
Neue ISBN: 978-3-8381-3538-0 (9783838135380)

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In the last years the impressive progress on the experimental side led to a variety of new experiments allowing to address systems out of equilibrium. In this way the behavior of such systems far from equilibrium is no longer a purely theoretical issue but indeed observable. New experimental techniques, like particles trapped in optical lattices, render a realization of quantum systems with nearly arbitrary system parameters possible. Thus a study of interaction quenches where the interaction between the particles is suddenly switched on is possible. As these quenches take the system far from equilibrium the dynamics is governed by highly excited states, which leads to totally new fascinating phenomena. In this work interaction quenches in fermionic Hubbard models are studied in one and two dimensions allowing to study the influence of integrability on the dynamics of the system. Besides, the influence of doping on the time evolution of the system is calculated.
Simone Hamerla, Dr. rer. nat. born in 1984, studied Physics at the TU Dortmund with a focus on condensed matter theory, especially on strongly correlated systems out of equilibrium, got her PhD in 2013 from the TU Dortmund