The Superfluidity and Experimental Properties of Odd-Energy-Gap Superconductors
arXiv:cond-mat/9306004 · doi:10.1209/0295-5075/26/2/011
Abstract
We consider the experimental properties of superconductors with a gap which is an odd function of energy $\bepsk=\epsk - μ$, i.e.\ , a gap which vanishes everywhere on the Fermi surface; this is done within a in a BCS framework. Apart from the standard phenomenology (density of states, penetration depth, NMR, , ), we also look at the stability of the superconducting state. It is stable to finite supercurrents (although with a normal fluid density which increases with the supercurrent density), and is also very weakly affected by non-magnetic impurities. We find two classes of odd-gap superconductors, which strongly differ in their low-energy properties. For a certain parameter range, most of the results resemble those for d-wave superconductors (except for the effect of impurities).
LaTeX, 13pp plus 6 PS figures included in PSBOX format UBCTP CM1-1993