English

Magnetic scaling in cuprate superconductors

Condensed Matter 2009-10-28 v1

Abstract

We determine the magnetic phase diagram for the YBa2_2Cu3_3O6+x_{6+x} and La2x_{2-x}Srx_xCuO4_4 systems from various NMR experiments. We discuss the possible interpretation of NMR and neutron scattering experiments in these systems in terms of both the non-linear σ\sigma-model of nearly localized spins and a nearly antiferromagnetic Fermi liquid description of magnetically coupled quasiparticles. We show for both the 2:1:4 and 1:2:3 systems that bulk properties, such as the spin susceptibiltiy, and probes at the antiferromagnetic wavevector (π,π)(\pi, \pi), such as 63T1^{63}T_1, the 63Cu ^{63}Cu spin relaxation time, both display a crossover at a temperature TcrT_{cr}, which increases linearly with decreasing hole concentration, from a non-universal regime to a z=1z=1 scaling regime characterized by spin pseudogap behavior. We pursue the consequences of the ansatz that TcrT_{cr} corresponds to a fixed value of the antiferromagnetic correlation length, ξ\xi, and show how this enables one to extract the magnitude and temperature dependence of ξ\xi from measurements of T1T_1 alone. We show that like TcrT_{cr}, the temperature TT_* which marks a crossover at low temperatures from the z=1z=1 scaling regime to a quantum disordered regime, exhibits the same dependence on doping for the 2:1:4 and 1:2:3 systems, and so arrive at a unified description of magnetic behavior in the cuprates, in which the determining factor is the planar hole concentration. We apply our quantitative results for YBa2_2Cu3_3O7_7 to the recent neutron scattering experiments of Fong {\em et al}, and show that the spin excitation near 40meV40 meV measured by them corresponds to a spin gap excitation, which is overdamped in the normal state, but becomes visible in the superconducting state.

Keywords

Cite

@article{arxiv.cond-mat/9505090,
  title  = {Magnetic scaling in cuprate superconductors},
  author = {V. Barzykin and D. Pines},
  journal= {arXiv preprint arXiv:cond-mat/9505090},
  year   = {2009}
}

Comments

18 pages, RevTex, 18 figures are available upon request; submitted to Phys. Rev. B