Superheating Field of Extreme Type-II Superconductors Calculated from the Eliashberg Theory
Ramesh Paudel, Alex Gurevich
Abstract
We calculate the superheating field Hs of a type-II superconductor with a large Ginzburg-Landau parameter from the isotropic Eliashberg theory. It is shown that the temperature dependencies of Hs(T) can be obtained from a thermodynamic approach for different scattering parameters p=/2πτNkBTc in a wide range of the nonmagnetic impurity scattering times τN ranging from the clean (p 1) to the dirty (p 1) limits. Specific calculations were done for Nb and Nb3Sn using their electron-phonon spectral functions extracted from tunneling measurements. We show that the ratio Hs(T,p)/Hc(T) calculated from the Eliashberg theory exceeds that of the weak coupling BCS model, where Hc is the thermodynamic magnetic field. We also show that, even though nonmagnetic impurities are pairbreakers in the current-carrying state, Hs(0,p) for Nb3Sn at T=0 has a maximum at p≈ 0.2 at which the ratio Hs/Hc is about 6\% higher than that in the BCS clean limit.
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