arXiv · cond-mat/0307705
Quantum dissociation of a vortex-antivortex pair in a long Josephson junction
Abstract
We report a theoretical analysis and experimental observation of the quantum dynamics of a single vortex-antivortex (VAV) pair confined in a long narrow annular Josephson junction. The switching of the junction from the superconducting state to the resistive state occurs via the dissociation of a pinned VAV pair. The pinning potential is controlled by external magnetic field $H$ and dc bias current $I$. We predict a specific magnetic field dependence of the oscillatory energy levels of the pinned VAV state and the crossover to a {\it macroscopic quantum tunneling} mechanism of VAV dissociation at low temperatures. Our analysis explains the experimentally observed {\it increase} of the width of the switching current distribution $P(I)$ with $H$ and the crossover to the quantum regime at the temperature of about 100 mK.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
M. V. Fistul, A. Wallraff, Y. Koval, A. Lukashenko, B. A. Malomed, A. V. Ustinov. 2003-07-29. Quantum dissociation of a vortex-antivortex pair in a long Josephson junction. https://doi.org/10.1103/physrevlett.91.257004
Cite the original work for its findings. Save a collection to share your selection of sources.