English

UI$_3$ -- 5f-electron magnetic van der Waals material

Strongly Correlated Electrons 2022-10-19 v1 Materials Science

Abstract

We grew high-quality single crystals of the 5f electron van der Waals compound UI3_3 and investigated them by measurements of specific heat and magnetization as functions of temperature and magnetic field. UI3_3 behaves as an antiferromagnet with a first-order magnetic phase transition at the Ne\'el temperature TNT_N = 2.65 K. It is characterized by a sharp symmetric specific-heat peak which is gradually shifted to lower temperatures by increasing magnetic field applied along either the a- or b-axis. The behavior in magnetic fields reveals orthorhombic magnetocrystalline anisotropy with the hard magnetization direction along the c-axis. The 2-K a- and b-axis magnetization curves exhibit a metamagnetic transition at the critical field HcH_c = 3 T and 1.8 T, respectively. In higher fields, when the long-range antiferromagnetism is suppressed by a metamagnetic transition, signs of short-range magnetic ordering of antiferromagnetic correlations in the paramagnetic state show up both in specific heat and magnetization. The anomalous S-shape field dependence of a-axis magnetization well above HcH_c can be understood as the crossover from the correlated paramagnetic regime to the high-field polarized paramagnet. The magnetic phase diagrams for the magnetic field applied along the a- and b-axis, respectively, designed using the mentioned experimental results are presented. We have also found that the UI3_3 crystals are easily cleavable which predisposes this material for direct investigation of 5f electron magnetism in the 2D limit on exfoliated atomically thin samples.

Keywords

Cite

@article{arxiv.2207.06880,
  title  = {UI$_3$ -- 5f-electron magnetic van der Waals material},
  author = {Dávid Hovančík and Marie Kratochvílová and Petr Doležal and Anežka Bendová and Jiří Pospíšil and Vladimír Sechovský},
  journal= {arXiv preprint arXiv:2207.06880},
  year   = {2022}
}

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