Theoretical study of quasiparticle states near the surface of a quasi-one-dimensional organic superconductor
arXiv:cond-mat/0103381 · doi:10.1103/PhysRevB.64.214510
Abstract
Quasiparticle states near the surface of a quasi-one-dimensional organic superconductor are studied based on an extended Hubbard model on a quasi-one dimensional lattice at quarter-filling. Three types of pairing symmetries, (i) p-wave, (ii) d-wave, or (iii) -wave are assumed. The resulting surface density of states has characteristic features for each pairing symmetry: i) a zero-energy peak (ZEP) in a U-shaped structure, ii) a V-shaped structure without ZEP, and iii) a ZEP in a V-shaped structure. From these results, we propose that the tunneling spectroscopy serves as a strong method to identify the the pairing symmetry in .
5 pages, 2 figures
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