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Vibrating-coil magnetometry of the spin liquid properties of Tb2Ti2O7

Strongly Correlated Electrons 2015-06-05 v1 Materials Science

Abstract

We have explored the spin liquid state in Tb2Ti2O7 with vibrating coil magnetometry down to 0.04 K under magnetic fields up to 5 T. We observe magnetic history dependence below T<0.2T < 0.2K reminiscent of the classical spin ice systems Ho2Ti2O7 and Dy2Ti2O7. The magnetic phase diagram inferred from the magnetization is essentially isotropic, without evidence of magnetization plateaux as anticipated for so-called quantum spin ice, predicted theoretically for [111] when quantum fluctuations renormalize the interactions. Instead, the magnetization for TTT \ll T* agrees semi-quantitatively with the predictions of "all-in/all-out" (AIAO) antiferromagnetism. Taken together this suggests that the spin liquid state in Tb2Ti2O7 is akin to an incipient AIAO-antiferromagnet.

Keywords

Cite

@article{arxiv.1206.4521,
  title  = {Vibrating-coil magnetometry of the spin liquid properties of Tb2Ti2O7},
  author = {S. Legl and C. Krey and S. R. Dunsiger and H. A. Dabkowska and J. A. Rodriguez and G. M. Luke and C. Pfleiderer},
  journal= {arXiv preprint arXiv:1206.4521},
  year   = {2015}
}

Comments

accepted in Physical Review Letters