Michael Uhlmann

Aspects of Quantum Fluctuations under Time-dependent External Influences

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http://nbn-resolving.de/urn:nbn:de:swb:14-1192702290148-21587

Kurzfassung in Englisch

The vacuum of quantum field theory is not empty space but filled with quantum vacuum fluctuations, which give rise to many intriguing effects. The first part of this Thesis addresses cosmic inflation, where the quantum fluctuations of the inflaton field freeze and get amplified in the expanding universe. Afterwards, we turn our attention towards Bose-Einstein condensates, a laboratory system. Since most of our calculations are performed using a mean-field expansion, we will study the accuracy of a finite-range interaction potential onto such an expansion. Exploiting the universality of quantum fluctuations, several aspects of cosmic inflation will be identified in ballistically expanding Bose-Einstein condensates. The effective action technique for calculating the quantum backreaction will be scrutinized. Finally, we consider dynamic quantum phase transitions in the last part of this Thesis. To this end two specific scenarios will be investigated: firstly, the structure formation during the superfluid to Mott-insulator transition in the Bose-Hubbard model; and secondly, the formation of spin domains as a two-dimensional spin-one Bose gas is quenched from the (polar) paramagnetic to the (planar) ferromagnetic phase. During this quench, the symmetry of the ground state is spontaneously broken and vortices (topological defects) form.

weitere Metadaten

Schlagwörter
(Deutsch)
Nichtgleichgewichtsprozesse, Quantenfluktuationen , Bose-Einstein Kondensate, Quantenphasenübergänge, Kosmische Inflation
Schlagwörter
(Englisch)
non-equilibrium processes, quantum fluctuations, Bose-Einstein condensates, quantum phase transitions, cosmic inflation
DDC Klassifikation530
RVK KlassifikationVE 5787
Institution(en) 
InstitutionTechnische Universität Dresden
AbteilungPhysik
BetreuerProf. Dr. Jan-Michael Rost
GutachterProf. Dr. Jan-Michael Rost
Dr. Ralf Schützhold
Prof. Dr. Grigory E. Volovik
DokumententypDissertation
SpracheEnglisch
Tag d. Einreichung (bei der Fakultät)23.05.2007
Tag d. Verteidigung / Kolloquiums / Prüfung01.10.2007
Veröffentlichungsdatum (online)18.10.2007
persistente URNurn:nbn:de:swb:14-1192702290148-21587

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