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Article Dans Une Revue Proceedings of the National Academy of Sciences of the United States of America Année : 2012

How an interacting many-body system tunnels through a potential barrier to open space

Résumé

The tunneling process in a many-body system is a phenomenon which lies at the very heart of quantum mechanics. It appears in nature in the form of α-decay, fusion and fission in nuclear physics, and photoassociation and photodissociation in biology and chemistry. A detailed theoretical description of the decay process in these systems is a very cumbersome problem, either because of very complicated or even unknown interparticle interactions or due to a large number of constituent particles. In this work, we theoretically study the phenomenon of quantum many-body tunneling in a transparent and controllable physical system, an ultracold atomic gas. We analyze a full, numerically exact many-body solution of the Schrödinger equation of a one-dimensional system with repulsive interactions tunneling to open space. We show how the emitted particles dissociate or fragment from the trapped and coherent source of bosons: The overall many-particle decay process is a quantum interference of single-particle tunneling processes emerging from sources with different particle numbers taking place simultaneously. The close relation to atom lasers and ioniza-tion processes allows us to unveil the great relevance of many-body correlations between the emitted and trapped fractions of the wave function in the respective processes. coherence | cold atoms | many-body physics | quantum dynamics | fragmentation
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hal-02369785 , version 1 (19-11-2019)

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Axel U. J. Lode, Alexej Streltsov, Kaspar Sakmann, O. Alon, Lorenz Cederbaum. How an interacting many-body system tunnels through a potential barrier to open space. Proceedings of the National Academy of Sciences of the United States of America, 2012, 109 (34), pp.13521-13525. ⟨10.1073/pnas.1201345109⟩. ⟨hal-02369785⟩

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