arXiv · 1404.3602
Flux Dependent Crossover Between Quantum and Classical Behavior in a dc-SQUID
Abstract
In a coupled system of one classical and one quantum mechanical degree of freedom, the quantum degree of freedom can facilitate the escape of the whole system. Such unusual escape characteristics have been theoretically predicted as "Münchhausen effect". We implement such a system by shunting one of the two junctions of a dc-SQUID with an additional capacitance. In our experiments, we detect a crossover between quantum and classical escape processes related to the direction of escape. We find that, under varying external magnetic flux, macroscopic quantum tunneling periodically alternates with thermally activated escape, a hallmark of the "Münchhausen effect".
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Susanne Butz, Alexey K. Feofanov, Kirill G. Fedorov, Hannes Rotzinger, Alexander U. Thomann, Brigitte Mackrodt, Ralf Dolata, Vadim B. Geshkenbein, Gianni Blatter, Alexey V. Ustinov. 2014-04-14. Flux Dependent Crossover Between Quantum and Classical Behavior in a dc-SQUID. https://doi.org/10.1103/physrevlett.113.247005
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