Transport theory of superconductors with singular interaction corrections.
We study effects of strong fluctuations on the transport properties of superconductors near the classical critical point. In this regime conductivity is set by the delicate interplay of two competing effects. The first is that strong electron-electron interactions in the Cooper channel increase the lifetime of fluctuation Cooper pairs and thus enhance conductivity. On the other hand, quantum pair-breaking effects tend to suppress superconductivity. An interplay between these processes defines new temperature regime, Gi {le} T-T{sub c}/T{sub c} {le} {radical}Gi, where fluctuation induced transport becomes more singular, here Gi is the Ginzburg number. The most singular contributions to the conductivity stem from the dynamic Aslamazov-Larkin term, and interesting Maki-Thompson and interference corrections. The crossover temperature T{sub c}{radical}Gi from weakly to strongly fluctuating regime is generated self-consistently as the result of scattering on dynamic variations in the order parameter. We suggest that the way to probe nonlinear fluctuations in superconductors is by magnetoconductivity measurements in the perpendicular field.
- Research Organization:
- Argonne National Laboratory (ANL)
- Sponsoring Organization:
- SC
- DOE Contract Number:
- AC02-06CH11357
- OSTI ID:
- 971485
- Report Number(s):
- ANL/MSD/JA-65972
- Journal Information:
- Phys. Rev. B, Journal Name: Phys. Rev. B Journal Issue: 2010 Vol. 81; ISSN 1098-0121
- Country of Publication:
- United States
- Language:
- ENGLISH
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Related Subjects
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
COOPER PAIRS
ELECTRON-ELECTRON INTERACTIONS
FLUCTUATIONS
GEOGRAPHIC INFORMATION SYSTEMS
LIFETIME
ORDER PARAMETERS
PROBES
SCATTERING
SUPERCONDUCTIVITY
SUPERCONDUCTORS
TRANSPORT
TRANSPORT THEORY