Physical Review Letters · 1988 · 276 citations · 21 references
Superconducting MaterialEngineeringBismuth-based SuperconductorsTunneling MicroscopyNovel SuperconductorsSuperconductivityQuantum MaterialsFree-energy BarrierMacroscopic Quantum TunnelingQuantum MatterSuperconducting DevicesQuantum-mechanical TunnelingLow-temperature BehaviorLow-temperature SuperconductivityQuantum ScienceHigh-tc SuperconductivityPhysicsHigh-temperature SuperconductivityNatural SciencesCondensed Matter PhysicsUnconventional SuperconductivityApplied PhysicsQuantum Superconductivity
Measurements of the superconducting-to-normal transition in very-small-diameter In wires are presented. The results are discussed in terms of the currently accepted theory, in which dissipation below ${T}_{c}$ is attributed to thermally activated motion of the Ginzburg-Landau order parameter over the free-energy barriers which separate metastable states. This theory is consistent with our results for temperatures within about 0.2 K of ${T}_{c}$, but at lower temperatures it fails qualitatively. We suggest that the low-temperature behavior is dominated by quantum-mechanical tunneling through the free-energy barrier, and show that our results are consistent with this picture.
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Dynamics of the dissipative two-state system
A. J. Leggett, Sudip Chakravarty, Alan T. Dorsey et al. · Reviews of Modern Physics · 1987 · 5K citations
Quantum tunnelling in a dissipative system
A. O. Caldeira, A. J. Leggett · Annals of Physics · 1983 · 3.6K citations
Introduction to Superconductivity
B.J. Maddock · Physics Bulletin · 1976 · 2.9K citations
Superconducting Material, Engineering, Critical Currents +16