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Quantum nucleation and thermal activation of vortex rings in high-Tc superconductors

H. Jiang, A. Widom, Y. Huang, T. Yuan, C. Vittoria, D. B. Chrisey, J. S. Horwitz

DOI 10.1103/PhysRevB.45.3048 · Physical Review B

T1

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Abstract

Vortex-ring nucleation by thermal activation and quantum-tunneling processes in high-Tc superconductors is discussed. The nonlinear resistance scales as eν−(J/J)ν. Thermal activation yields a critical index of ν=1, while quantum tunneling (without normal current dissipation) yields a critical index of ν=2. Current-voltage characteristics were measured on both disordered (low-Jc), ordered (c axis normal to the film plane, high-Jc) Y-Ba-Cu-O films, and microbridges below Tc. The data were examined in terms of both thermal-activation and quantum-nucleation models. For the disordered films, the ν=1 scaling law is in reasonable agreement with data, while ν=2 scaling is required to explain the results of the ordered films at low temperatures. For the microbridges, the ν=2 scaling extends even to high temperatures.

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FormulaReported Tc (K)Pressure (GPa)Type
YBa2Cu3O7

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—Pressure not reportedunknown

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