Spin-sensitive Long-ranged Proximity Effect for Triplet Superconductors
arXiv:1009.3014 · doi:10.1103/PhysRevB.83.060508
Abstract
The discovery of noncentrosymmetric superconductors, such as CePtSi, and chiral superconductors, such as SrRuO, calls for experimental methods to identify the presence of spin-triplet pairing. We here demonstrate a method which accomplishes this in an appealingly simple manner: a spin-sensitive proximity effect in a ferromagnettriplet superconductor bilayer. It is shown how the orientation of the field can be used to unambiguously distinguish between different spin-triplet states. Moreover, the proximity effect becomes long-ranged in spite of the presence of an exchange field and even without any magnetic inhomogeneities, in contrast to conventional SF junctions. Our results can be verified by STM-spectroscopy and could be useful as a tool to characterize the pairing state in unconventional superconducting materials.
4 pages, 3 figures