arXiv · 1007.4942
Phase space tweezers for tailoring cavity fields by quantum Zeno dynamics
Abstract
We discuss an implementation of Quantum Zeno Dynamics in a Cavity Quantum Electrodynamics experiment. By performing repeated unitary operations on atoms coupled to the field, we restrict the field evolution in chosen subspaces of the total Hilbert space. This procedure leads to promising methods for tailoring non-classical states. We propose to realize `tweezers' picking a coherent field at a point in phase space and moving it towards an arbitrary final position without affecting other non-overlapping coherent components. These effects could be observed with a state-of-the-art apparatus.
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Jean-Michel Raimond, Clément Sayrin, S. Gleyzes, Igor Dotsenko, Michel Brune, Serge Haroche, Saverio Pascazio, Paolo Facchi. 2010-07-28. Phase space tweezers for tailoring cavity fields by quantum Zeno dynamics. https://doi.org/10.1103/physrevlett.105.213601
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