Antiferromagnetic order induced by an applied magnetic field in a high-temperature superconductor
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- 17 January 2002
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 415 (6869) , 299-302
- https://doi.org/10.1038/415299a
Abstract
One view of the high-transition-temperature (high-Tc) copper oxide superconductors is that they are conventional superconductors where the pairing occurs between weakly interacting quasiparticles (corresponding to the electrons in ordinary metals), although the theory has to be pushed to its limit1. An alternative view is that the electrons organize into collective textures (for example, charge and spin stripes) which cannot be ‘mapped’ onto the electrons in ordinary metals. Understanding the properties of the material would then need quantum field theories of objects such as textures and strings, rather than point-like electrons2,3,4,5,6. In an external magnetic field, magnetic flux penetrates type II superconductors via vortices, each carrying one flux quantum7. The vortices form lattices of resistive material embedded in the non-resistive superconductor, and can reveal the nature of the ground state—for example, a conventional metal or an ordered, striped phase—which would have appeared had superconductivity not intervened, and which provides the best starting point for a pairing theory. Here we report that for one high-Tc superconductor, the applied field that imposes the vortex lattice also induces ‘striped’ antiferromagnetic order. Ordinary quasiparticle models can account for neither the strength of the order nor the nearly field-independent antiferromagnetic transition temperature observed in our measurements.Keywords
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This publication has 21 references indexed in Scilit:
- Stripes defeat the Fermi liquidNature, 2000
- Resistive upper critical fields and irreversibility lines of optimally doped high-cupratesPhysical Review B, 1999
- Neutron-scattering study of spin-density wave order in the superconducting state of excess-oxygen-dopedPhysical Review B, 1999
- Neutron-scattering study of static antiferromagnetic correlations inPhysical Review B, 1999
- Metallic stripes: Separation of spin, charge, and string fluctuationPhysical Review B, 1998
- Electronic liquid-crystal phases of a doped Mott insulatorNature, 1998
- Evidence for stripe correlations of spins and holes in copper oxide superconductorsNature, 1995
- Weak-coupling theory of high-temperature superconductivity in the antiferromagnetically correlated copper oxidesPhysical Review B, 1992
- Charged magnetic domain lines and the magnetism of high-oxidesPhysical Review B, 1989
- Antiferromagnetism inPhysical Review Letters, 1987