Neutron-scattering study of spin-density wave order in the superconducting state of excess-oxygen-doped
- 1 August 1999
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 60 (5), 3643-3654
- https://doi.org/10.1103/physrevb.60.3643
Abstract
We report neutron-scattering measurements of spin-density wave order within the superconducting state of a single crystal of predominately stage-4 with a (onset) of 42 K. The low-temperature elastic magnetic scattering is incommensurate with the lattice and is characterized by long-range order in the copper-oxide plane with the spin direction identical to that in the insulator. Between neighboring planes, the spins exhibit short-range correlations with a stacking arrangement reminiscent of that in the undoped antiferromagnetic insulator. The elastic magnetic peak intensity appears at the same temperature within the errors as the superconductivity, suggesting that the two phenomena are strongly correlated. These observations directly reveal the persistent influence of the antiferromagnetic order as the doping level increases from the insulator to the superconductor. In addition, our results confirm that spin-density wave order for incommensurabilities near is a robust feature of the -based superconductors.
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