Theory of Coherent -Axis Josephson Tunneling between Layered Superconductors
arXiv:cond-mat/0001272 · doi:10.1103/PhysRevB.62.661
Abstract
We calculate exactly the Josephson current for -axis coherent tunneling between two layered superconductors, each with internal coherent tight-binding intra- and interlayer quasiparticle dispersions. Our results also apply when one or both of the superconductors is a bulk material, and include the usually neglected effects of surface states. For weak tunneling, our results reduce to our previous results derived using the tunneling Hamiltonian. Our results are also correct for strong tunneling. However, the -axis tunneling results of Tanaka and Kashiwaya are shown to be incorrect in any limit. In addition, we consider the -axis coherent critical current between two identical layered superconductors twisted an angle about the -axis with respect to each other. Regardless of the order parameter symmetry, our coherent tunneling results using a tight-binding intralayer quasiparticle dispersion are inconsistent with the recent -axis twist bicrystal BiSrCaCuO twist junction experiments of Li {\it et al.}
11 pages, 13 figures, submitted to Physical Review B
Cited by in corpus (9)
- Presence of -wave pairing in Josephson junctions made of twisted ultrathin BiSrCaCuO flakes
- Josephson effects in twisted cuprate bilayers
- The c-axis transport in naturally-grown BiSrCaCuO cross-whisker junctions
- Gaussian Tunneling Model of c-Axis Twist Josephson Junctions
- Persistent Josephson tunneling between BiSrCaCuO flakes twisted by 45 across the superconducting dome
- Theory of BiSrCaCuO Cross-Whisker Josephson Junctions
- Josephson (001) tilt grain boundary junctions of high temperature superconductors
- Comment on "c-axis Josephson tunneling in -wave superconductors''
- Bi_2 Sr_2 CaCu_2 O_{8+delta} Bicrystal c-Axis Twist Josephson Junctions: A New Phase-Sensitive Test of Order Parameter Symmetry