English

Vacancy defects and monopole dynamics in oxygen-deficient pyrochlores

Strongly Correlated Electrons 2015-06-03 v1

Abstract

The idea of magnetic monopoles in spin ice has enjoyed much success at intermediate temperatures, but at low temperatures a description in terms of monopole dynamics alone is insufficient. Recently, numerical simulations were used to argue that magnetic impurities account for this discrepancy by introducing a magnetic equivalent of residual resistance in the system. Here we propose that oxygen deficiency is the leading cause of magnetic impurities in as-grown samples, and we determine the defect structure and magnetism in Y2Ti2O(7-\delta) using diffuse neutron scattering and magnetization measurements. These defects are eliminated by oxygen annealing. The introduction of oxygen vacancies causes Ti4+ to transform to magnetic Ti3+ with quenched orbital magnetism, but the concentration is anomalously low. In the spin-ice material Dy2Ti2O7 we find that the same oxygen-vacancy defects suppress moments on neighbouring rare-earth sites, and that these magnetic distortions dramatically slow down the long-time monopole dynamics at sub-Kelvin temperatures.

Keywords

Cite

@article{arxiv.1505.07035,
  title  = {Vacancy defects and monopole dynamics in oxygen-deficient pyrochlores},
  author = {G. Sala and M. J. Gutmann and D. Prabhakaran and D. Pomaranski and C. Mitchelitis and J. B. Kycia and D. G. Porter and C. Castelnovo and J. P. Goff},
  journal= {arXiv preprint arXiv:1505.07035},
  year   = {2015}
}

Comments

(12 pages, 5 figures; Supplementary Information available from the journal website)