Meissner effect in diffusive normal metal / d-wave superconductor junctions
arXiv:cond-mat/0510007 · doi:10.1016/j.jpcs.2005.05.070
Abstract
The Meissner effect in diffusive normal metal / insulator / d-wave superconductor junctions is studied theoretically in the framework of the Usadel equation under the generalized boundary condition. The effect of midgap Andreev resonant states (MARS) formed at the interface of d-wave superconductor is taken into account. It is shown that the formation of MARS suppresses the susceptibility of the diffusive normal metal.
5 pages, 4 figures, Proceedings of the ISSP International Symposium (ISSP-9) on Quantum Condensed System
References in corpus (4)
- Anomalous charge transport in mesoscopic triplet superconductor junctions
- Theory of charge transport in diffusive normal metal / unconventional singlet superconductor contacts
- Theory of charge transport in diffusive normal metal / conventional superconductor point contacts
- Influence of magnetic impurities on charge transport in diffusive-normal-metal / superconductor junctions