English

Magnetic field tuning of antiferromagnetic Yb$_{3}$Pt$_{4}$

Strongly Correlated Electrons 2015-05-28 v1

Abstract

We present measurements of the specific heat, magnetization, magnetocaloric effect and magnetic neutron diffraction carried out on single crystals of antiferromagnetic Yb3_{3}Pt4_{4}, where highly localized Yb moments order at TN=2.4T_{\rm N}=2.4 K in zero field. The antiferromagnetic order was suppressed to TN0T_{\rm N}\rightarrow 0 by applying a field of 1.85 T in the abab plane. Magnetocaloric effect measurements show that the antiferromagnetic phase transition is always continuous for TN>0T_{\rm N}>0, although a pronounced step in the magnetization is observed at the critical field in both neutron diffraction and magnetization measurements. These steps sharpen with decreasing temperature, but the related divergences in the magnetic susceptibility are cut off at the lowest temperatures, where the phase line itself becomes vertical in the field-temperature plane. As TN0T_{\rm N}\rightarrow0, the antiferromagnetic transition is increasingly influenced by a quantum critical endpoint, where TNT_{\rm N} ultimately vanishes in a first order phase transition.

Keywords

Cite

@article{arxiv.1107.2580,
  title  = {Magnetic field tuning of antiferromagnetic Yb$_{3}$Pt$_{4}$},
  author = {L. S. Wu and Y. Janssen and C. Marques and M. C. Bennett and M. S. Kim and K. Park and Songxue Chi and J. W. Lynn and G. Lorusso and G. Biasiol and M. C. Aronson},
  journal= {arXiv preprint arXiv:1107.2580},
  year   = {2015}
}

Comments

9 pages, 6 figures