Magnetic-field effects on the in-plane electrical resistivity in the single-crystal LaBaCuO and LaNdSrCuO around : Relating to the field-induced stripe order
arXiv:cond-mat/0405088 · doi:10.1103/PhysRevB.71.104516
Abstract
Temperature dependence of the in-plane electrical resistivity, , in various magnetic fields has been measured in the single-crystal LaBaCuO with , 0.10, 0.11 and LaNdSrCuO with . It has been found that the superconducting transition curve shows a so-called fan-shape broadening in magnetic fields for , while it shifts toward the low-temperature side in parallel with increasing field for and 0.12 where the charge-spin stripe order is formed at low temperatures. As for , the broadening is observed in low fields and it changes to the parallel shift in high fields above 9 T. Moreover, the normal-state value of at low temperatures markedly increases with increasing field up to 15 T. It is possible that these pronounced features of are understood in terms of the magnetic-field-induced stabilization of the stripe order suggested from the neutron-scattering measurements in the La-214 system. The in the normal state at low temperatures has been found to be proportional to ln(1/) for , 0.11 and 0.12. The ln(1/) dependence of is robust even in the stripe-ordered state.
6 pages, 4 figures, ver. 2 has been accepted for publication in Phys. Rev. B