English

Two dimensionality in quasi one-dimensional cobalt oxides

Strongly Correlated Electrons 2009-11-11 v1 Materials Science

Abstract

By means of muon spin rotation and relaxation (μ+\mu^+SR) techniques, we have investigated the magnetism of quasi one-dimensional (1D) cobalt oxides AEn+2AE_{n+2}Con+1_{n+1}O3n+3_{3n+3} (AEAE=Ca, Sr and Ba, nn=1, 2, 3, 5 and \infty), in which the 1D CoO3_3 chain is surrounded by six equally spaced chains forming a triangular lattice in the abab-plane, using polycrystalline samples, from room temperature down to 1.8 K. For the compounds with nn=1 - 5, transverse field μ+\mu^+SR experiments showed the existence of a magnetic transition below \sim100 K. The onset temperature of the transition (TconT_{\rm c}^{\rm on}) was found to decrease with nn; from 100 K for nn=1 to 60 K for nn=5. A damped muon spin oscillation was observed only in the sample with nn=1 (Ca3_3Co2_2O6_6), whereas only a fast relaxation obtained even at 1.8 K in the other three samples. In combination with the results of susceptibility measurements, this indicates that a two-dimensional short-range antiferromagnetic (AF) order appears below TconT_{\rm c}^{\rm on} for all compounds with nn=1 - 5; but quasi-static long-range AF order formed only in Ca3_3Co2_2O6_6, below 25 K. For BaCoO3_3 (nn=\infty), as TT decreased from 300 K, 1D ferromagnetic (F) order appeared below 53 K, and a sharp 2D AF transition occurred at 15 K.

Keywords

Cite

@article{arxiv.cond-mat/0501232,
  title  = {Two dimensionality in quasi one-dimensional cobalt oxides},
  author = {J. Sugiyama and H. Nozaki and J. H. Brewer and E. J. Ansaldo and T. Takami and H. Ikuta and U. Mizutani},
  journal= {arXiv preprint arXiv:cond-mat/0501232},
  year   = {2009}
}

Comments

12 pages, 14 figures, and 2 tables

R2 v1 2026-07-22T11:12:30.118Z