Implications of spin vortex scenario for 1/8-doped lanthanum cuprates
arXiv:0810.1889 · doi:10.1007/s10948-010-1111-3
Abstract
Superlattice of spin vortices has been proposed in an earlier article as an alternative to the stripe interpretation of spin modulations in 1/8-doped lanthanum cuprates. The present article addresses several additional characteristics of the spin vortex lattice, namely: (i) the nature of extended charge states; (ii) the position of neutron spin peaks as a function of doping; and (iii) the absence of higher order spin harmonics. All these characteristics afford straightforward connection to the experimental results produced by angle-resolved photoemission spectroscopy, resistivity measurements, and neutron scattering.
4 pages, 2 figures
References in corpus (7)
- Scale-free structural organization of oxygen interstitials in La2CuO4+y
- The Ground State of the Pseudogap in Cuprate Superconductors
- Evidence for unusual superconducting correlations coexisting with stripe order in La(1.875)Ba(0.125)CuO(4)
- Magnetic neutron scattering in hole doped cuprate superconductors
- Energy gaps in the failed high-Tc superconductor La1.875Ba0.125CuO4
- Spontaneous symmetry breaking by charge stripes in the high-pressure phase of superconducting La(1.875)Ba(0.125)CuO(4)
- Nature of the Magnetic Order in the Charge-Ordered Cuprate LaNdSrCuO
Cited by in corpus (6)
- Single domain stripe order in a high-temperature superconductor
- Comment on "Broken translational and rotational symmetry via charge stripe order in underdoped YBa2Cu3O6+y"
- Competition of spatially inhomogeneous states in antiferromagnetic Hubbard model
- Pseudogap and Fermi surface in the presence of spin-vortex checkerboard for 1/8-doped lanthanum cuprates
- Superconductivity model for a spin-vortex checkerboard
- Dimensionality of spin modulations in 1/8-doped lanthanum cuprates from the perspective of NQR and muSR experiments