English

Spin Waves and Quantum Criticality in the Frustrated XY Pyrochlore Antiferromagnet Er2Ti2O7

Strongly Correlated Electrons 2012-07-16 v1

Abstract

We report detailed measurements of the low temperature magnetic phase diagram of Er2_2Ti2_2O7_7. Heat capacity and time-of-flight neutron scattering studies of single crystals, subject to magnetic fields applied along the crystallographic [110] direction, reveal unconventional low energy states. Er3+^{3+} magnetic ions reside on a pyrochlore lattice in Er2_2Ti2_2O7_7, where local XY anisotropy and antiferromagnetic interactions give rise to a unique frustrated system. In zero field, the ground state exhibits coexisting short and long range order, accompanied by soft collective spin excitations previously believed to be absent. The application of finite magnetic fields tunes the ground state continuously through a landscape of non-collinear phases, divided by a zero temperature phase transition at μ0Hc\mu_0 H_c \sim 1.5 T. The characteristic energy scale for spin fluctuations is seen to vanish at the critical point, as expected for a second order quantum phase transition driven by quantum fluctuations.

Keywords

Cite

@article{arxiv.0808.1082,
  title  = {Spin Waves and Quantum Criticality in the Frustrated XY Pyrochlore Antiferromagnet Er2Ti2O7},
  author = {J. P. C. Ruff and J. P. Clancy and A. Bourque and M. A. White and M. Ramazanoglu and J. S. Gardner and Y. Qiu and J. R. D. Copley and H. A. Dabkowska and B. D. Gaulin},
  journal= {arXiv preprint arXiv:0808.1082},
  year   = {2012}
}

Comments

5 pages, 4 figures, submitted for publication

R2 v1 2026-06-21T11:08:33.924Z