Observation of Scaling in the Dynamics of a Strongly Quenched Quantum Gas

We report on the experimental observation of scaling in the time evolution following a sudden quench into the vicinity of a quantum critical point. The experimental system, a two-component Bose gas with coherent exchange between the constituents, allows for the necessary high level of control of par...

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Veröffentlicht in:Physical review letters 2015-12, Vol.115 (24), p.245301-245301, Article 245301
Hauptverfasser: Nicklas, E, Karl, M, Höfer, M, Johnson, A, Muessel, W, Strobel, H, Tomkovič, J, Gasenzer, T, Oberthaler, M K
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Sprache:eng
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Zusammenfassung:We report on the experimental observation of scaling in the time evolution following a sudden quench into the vicinity of a quantum critical point. The experimental system, a two-component Bose gas with coherent exchange between the constituents, allows for the necessary high level of control of parameters as well as the access to time-resolved spatial correlation functions. The theoretical analysis reveals that when quenching the system close to the critical point, the energy introduced by the quench leads to a short-time evolution exhibiting crossover reminiscent of the finite-temperature critical properties in the system's universality class. Observing the time evolution after a quench represents a paradigm shift in accessing and probing experimentally universal properties close to a quantum critical point and allows in a new way benchmarking of quantum many-body theory with experiments.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.115.245301