English

Freezing of anisotropic spin clusters in La1.98Sr0.02CuO4

Strongly Correlated Electrons 2009-10-31 v2 Superconductivity

Abstract

A spin-glass compound, La1.98_{1.98}Sr0.02_{0.02}CuO4_4, shows quasi-three-dimensional magnetic ordering below \sim40 K. A remarkable feature is that the magnetic correlation length along the orthorhombic aorthoa\rm_{ortho} axis is much longer than that along the borthob\rm_{ortho} axis, suggesting that the spin structure is closely related to the diagonal stripe structure. The spin-glass state can be expressed as a random freezing of quasi-three-dimensional spin clusters with anisotropic spin correlations (ξa160\xi'_a\sim160 \AA, ξb25\xi'_b\sim25 \AA, and ξc4.7\xi'_c\sim4.7 \AA at 1.6 K). The new magnetic state is important as an intermediate phase between the three-dimensional antiferromagnetic ordered phase in La2_2CuO4_4 and the incommensurate phase in La1.95_{1.95}Sr0.05_{0.05}CuO4_4 in which the positions of the incommensurate peaks are rotated by 45^\circ in reciprocal space about (π\pi,π\pi) from those observed in the superconducting La2_2CuO4_4 compounds.

Keywords

Cite

@article{arxiv.cond-mat/9907435,
  title  = {Freezing of anisotropic spin clusters in La1.98Sr0.02CuO4},
  author = {M. Matsuda and Y. S. Lee and M. Greven and M. A. Kastner and R. J. Birgeneau and K. Yamada and Y. Endoh and P. Boeni and S. -H. Lee and S. Wakimoto and G. Shirane},
  journal= {arXiv preprint arXiv:cond-mat/9907435},
  year   = {2009}
}

Comments

7 pages, RevTex, 8 PS figures, submitted to Phys. Rev. B