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Tuning the Room Temperature Ferromagnetism in Fe5GeTe2 by Arsenic Substitution

Materials Science 2021-11-15 v1 Strongly Correlated Electrons

Abstract

In order to tune the magnetic properties of the cleavable high-Curie temperature ferromagnet Fe5x_{5-x}GeTe2_2, the effect of increasing the electron count through arsenic substitution has been investigated. Small additions of arsenic (2.5 and 5%) seemingly enhance ferromagnetic order in polycrystalline samples by quenching fluctuations on one of the three magnetic sublattices, whereas larger As concentrations decrease the ferromagnetic Curie temperature (TCT_{\rm C}) and saturation magnetization. This work also describes the growth and characterization of Fe4.8_{4.8}AsTe2_2 single crystals that are structurally analogous to Fe5x_{5-x}GeTe2_2 but with some phase stability complications. Magnetization measurements reveal dominant antiferromagnetic behavior in Fe4.8_{4.8}AsTe2_2 with a N\'{e}el temperature of TNT_{\rm N} \approx42K. A field-induced spin-flop below TNT_{\rm N} results in a switch from negative to positive magnetoresistance, with significant hysteresis causing butterfly-shaped resistance loops. In addition to reporting the properties of Fe4.8_{4.8}AsTe2_2, this work shows the importance of manipulating the individual magnetic sublattices in Fe5x_{5-x}GeTe2_2 and motivates further efforts to control the magnetic properties in related materials by fine tuning of the Fermi energy or crystal chemistry.

Keywords

Cite

@article{arxiv.2111.06439,
  title  = {Tuning the Room Temperature Ferromagnetism in Fe5GeTe2 by Arsenic Substitution},
  author = {Andrew F. May and Jiaqiang Yan and Raphael Hermann and Mao-Hua Du and Michael A. McGuire},
  journal= {arXiv preprint arXiv:2111.06439},
  year   = {2021}
}

Comments

Accepted for publication in 2D Materials, with accepted version online