^{59}Co NMR evidence for charge ordering below T_{CO}\sim 51 K in Na_{0.5}CoO_2
arXiv:0711.4023 · doi:10.1103/PhysRevLett.100.086405
Abstract
The CoO layers in sodium-cobaltates NaCoO may be viewed as a spin triangular-lattice doped with charge carriers. The underlying physics of the cobaltates is very similar to that of the high cuprates. We will present unequivocal Co NMR evidence that below , the insulating ground state of the itinerant antiferromagnet NaCoO () is induced by charge ordering.
Phys. Rev. Lett. 100 (2008), in press. 4 figures
References in corpus (4)
- Novel Charge Order and Superconductivity in Two-Dimensional Frustrated Lattice at Quarter Filling
- Searching for Stable Na-ordered Phases in Single Crystal Samples of gamma-NaxCoO2
- Charge and spin order on the triangular lattice -- NaCoO at
- Magnetic Phase Transition at 88 K in Na0.5CoO2 revealed by 23Na-NMR investigations
Cited by in corpus (5)
- Scalar spin chirality and quantum Hall effect on a triangular lattice
- Spontaneous quantum Hall effect via thermally induced quadratic Fermi point
- Rearrangement of Sodium ordering and its effect on physical properties in system
- Enhanced Seebeck coefficient by a filling-induced Lifshitz transition in KxRhO2
- Hall effect evidence for an interplay between electronic correlations and Na order induced electronic bands topology in NaxCoO2