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Superconducting Qubits Open Quantum Systems Decoherence

Quantum dissociation of a vortex-antivortex pair in a long josephson junction.

PubMed
Authors: Fistul MV, Wallraff A, Koval Y, Lukashenko A, Malomed BA, Ustinov AV

Year

2003

Paper ID

12982

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

121

Citations

36

Abstract

The thermal and the quantum dissociation of a single vortex-antivortex (VAV) pair in an annular Josephson junction is experimentally observed and theoretically analyzed. In our experiments, the VAV pair is confined in a pinning potential controlled by external magnetic field and bias current. The dissociation of the pinned VAV pair manifests itself in a switching of the Josephson junction from the superconducting to the resistive state. The observed temperature and field dependence of the switching current distribution is in agreement with the analysis. The crossover from the thermal to the macroscopic quantum tunneling mechanism of dissociation occurs at a temperature of about 100 mK. We also predict the specific magnetic field dependence of the oscillatory energy levels of the pinned VAV state.

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  • This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
  • It adds a 2003 reference point for readers tracking recent quantum research.
  • The thermal and the quantum dissociation of a single vortex-antivortex (VAV) pair in an annular Josephson junction is experimentally observed and theoretically analyzed.

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Current Paper #12982 #68449 Scale-Invariant Open Quantum Sy... #68437 Transition-state lattice modes ... #68470 A fluxonium qubit-based hybrid ... #68456 Analytic Properties of the Jost...

External citation index: OpenAlex citation signal • updated 2026-06-13 02:34:44

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