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Anisotropic magnetic properties of the ferromagnetic semiconductor CrSbSe$_3$

Materials Science 2018-01-24 v1

Abstract

Single crystals of CrSbSe3_3, a structurally pseudo-one-dimensional ferromagnetic semiconductor, were grown using a high-temperature solution growth technique and were characterized by x-ray diffraction, anisotropic, temperature- and field-dependent magnetization, temperature-dependent resistivity and optical absorption measurements. A band gap of 0.7 eV was determined from both resistivity and optical measurements. At high temperatures, CrSbSe3_3 is paramagnetic and isotropic with a Curie-Weiss temperature of \sim145 K and an effective moment of \sim4.1 μB\mu_B/Cr. A ferromagnetic transition occurs at TcT_c = 71 K. The aa-axis, perpendicular to the chains in the structure, is the magnetic easy axis, while the chain axis direction, along bb, is the hard axis. Magnetic isotherms measured around TcT_c do not follow the behavior predicted by simple mean field critical exponents for a second order phase transition. A tentative set of critical exponents is estimated based on a modified Arrott plot analysis, giving β\beta\sim0.25, γ\gamma\sim1.38 and δ\delta\sim6.6.

Keywords

Cite

@article{arxiv.1711.06342,
  title  = {Anisotropic magnetic properties of the ferromagnetic semiconductor CrSbSe$_3$},
  author = {Tai Kong and Karoline Stolze and Ni Danrui and Satya K. Kushwaha and Robert J. Cava},
  journal= {arXiv preprint arXiv:1711.06342},
  year   = {2018}
}

Comments

6 pages, 7 figures