N. Morozov et al., High-field quasiparticle tunneling in Bi2Sr2CaCu2O8+delta: Negative magnetoresistance in the superconducting state, PHYS REV L, 84(8), 2000, pp. 1784-1787
We report on the c-axis resistivity rho(c)(H) in Bi2Sr2CaCu2O8+delta that p
eaks in quasistatic magnetic fields up to 60 T. By suppressing the Josephso
n part of the two-channel (Cooper pair/quasiparticle) conductivity sigma(c)
(H), we find that the negative slope of rho(c)(H) above the peak is due to
quasiparticle tunneling conductivity a,(H) across the CuO2 layers below H-c
2. At high fields (a) sigma(q),(H) grows linearly with H, and (b) rho(c)(T)
tends to saturate (sigma(c) not equal 0) as T --> 0, consistent with the s
cattering at the nodes of the d-wave gap. A superlinear sigma(q)(H) marks t
he normal state above T-c.