Quantum information processing in optical lattices and magnetic microtraps

Beitrag in einer Fachzeitschrift

Details zur Publikation

Autorinnen und Autoren: Treutlein P, Steinmetz T, Colombe Y, Lev B, Hommelhoff P, Reichel J, Greiner M, Mandel O, Widera A, Rom T, Bloch I, Haensch TW
Zeitschrift: Fortschritte Der Physik-Progress of Physics
Verlag: Wiley-VCH Verlag
Jahr der Veröffentlichung: 2006
Band: 54
Seitenbereich: 702-718
ISSN: 0015-8208


We review our experiments on quantum information processing with neutral atoms in optical lattices and magnetic microtraps. Atoms in an optical lattice in the Mott insulator regime serve as a large qubit register. A spin-dependent lattice is used to split and delocalize the atomic wave functions in a controlled and coherent way over a defined number of lattice sites. This is used to experimentally demonstrate a massively parallel quantum gate array, which allows the creation of a highly entangled many-body cluster state through coherent collisions between atoms on neighbouring lattice sites. In magnetic microtraps on an atom chip, we demonstrate coherent manipulation of atomic qubit states and measure coherence lifetimes exceeding one second at micron-distance from the chip surface. We show that microwave near-fields on the chip can be used to create state-dependent potentials for the implementation of a quantum controlled phase gate with these robust qubit states. For single atom detection and preparation, we have developed high finesse fiber Fabry-Perot cavities and integrated them on the atom chip. We present an experiment in which we detected a very small number of cold atoms magnetically trapped in the cavity using the atom chip. © 2006 WILEY-VCH Verlag GmbH & Co. KGaA.

FAU-Autorinnen und Autoren / FAU-Herausgeberinnen und Herausgeber

Hommelhoff, Peter Prof. Dr.
Lehrstuhl für Laserphysik

Einrichtungen weiterer Autorinnen und Autoren

Harvard University
Johannes Gutenberg-Universität Mainz
Max-Planck-Institute of Quantum Optics (MPQ) / Max-Planck-Institut für Quantenoptik
Stanford University
University of Colorado at Boulder


Treutlein, P., Steinmetz, T., Colombe, Y., Lev, B., Hommelhoff, P., Reichel, J.,... Haensch, T.W. (2006). Quantum information processing in optical lattices and magnetic microtraps. Fortschritte Der Physik-Progress of Physics, 54, 702-718. https://dx.doi.org/10.1002/prop.200610325

Treutlein, Philipp, et al. "Quantum information processing in optical lattices and magnetic microtraps." Fortschritte Der Physik-Progress of Physics 54 (2006): 702-718.


Zuletzt aktualisiert 2018-09-08 um 12:53