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From atom optics to quantum simulation interacting bosons and fermions in three-dimensional optical lattice potentials Sebastian Will

Springer Nature - Springer Physics and Astronomy (R0) eBooks 2013 English International Available online

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Format:
Book
Thesis/Dissertation
Author/Creator:
Will, Sebastian
Series:
Springer theses
Language:
English
Subjects (All):
Low temperatures.
Optical lattices.
Bosons.
Fermions.
Interacting boson-fermion models.
Genre:
theses
dissertations
Academic theses
Physical Description:
1 online resource
Place of Publication:
Berlin New York Springer 2013
Language Note:
English
Summary:
This thesis explores ultracold quantum gases of bosonic and fermionic atoms in optical lattices. The highly controllable experimental setting discussed in this work, has opened the door to new insights into static and dynamical properties of ultracold quantum matter. One of the highlights reported here is the development and application of a novel time-resolved spectroscopy technique for quantum many-body systems. By following the dynamical evolution of a many-body system after a quantum quench, the author shows how the important energy scales of the underlying Hamiltonian can be measured with quantum revival spectroscopy
Contents:
Introduction Towards Strongly Interacting Bosons and Fermions Hubbard Models for Bosons and Fermions Detection and Observables Experimental Apparatus Interacting Fermions in Optical Lattice Potentials Quantum Revival Spectroscopy and Multi-Body Interactions Interacting Mixtures of Bosons and Fermions in Optical Lattice Potentials Coherent Interaction of a Single Fermion with a Small Bosonic Field Conclusions and Outlook
Notes:
Ph. D. Johannes Gutenberg University
Includes bibliographical references
Print version record
Other Format:
Print version:
ISBN:
9783642336331
3642336337
3642336329
9783642336324
1283935295
9781283935296
OCLC:
823388569
Access Restriction:
Restricted for use by site license

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