English

Large saturation moment and high ferromagnetic transition temperature in a structurally disordered inverse Heusler alloy Fe2RuGe

Materials Science 2023-06-27 v1

Abstract

We report the successful synthesis of a new 4dd based polycrystalline inverse Heusler alloy Fe2_2RuGe by an arc melting process and have studied in detail its structural, magnetic and transport properties complemented with first principle calculations. X-ray and neutron diffraction, Extended X-ray Absorption Fine Structure and 57^{57}Fe M\"{o}ssbauer spectroscopic studies confirm the single phase nature of the system where the Fe and Ru atoms are randomly distributed in the 4cc and 4dd Wyckoff positions in a ratio close to 50:50. The formation of the disordered structure is also confirmed by the theoretical energy minimization calculation. Despite the random cross-site disorder of Fe and Ru atoms, magnetic measurements suggest not only a high Curie temperature of \sim860\,K, but also a large saturation magnetic moment \sim4.9\,μB\mu_B per formula unit at 5\,K, considerably exceeding the theoretical limit (4\,μB\mu_B per formula unit) predicted by the Slater-Pauling rule. Only a few Fe-based inverse Heusler alloys are known to exhibit such high Curie temperatures. Neutron diffraction analysis coupled with the isothermal magnetization value indicates that the magnetic moments in Fe2_2RuGe are associated with Fe-atoms only, which is also confirmed by M\"ossbauer spectrometry. Interestingly, in comparison to the cubic or hexagonal phase of the parent compound, Fe3_3Ge, the Curie temperature of Fe2_2RuGe has increased significantly despite the substitution of the nonmagnetic, yet isoelectronic element Ru in this structurally disordered compound. Our theoretical calculation reveals that the large Fe moment (2.8μB\sim2.8\mu_B/Fe) on the 4bb site can be attributed to a charge transfer from this Fe site towards its Ru neighbours. Such a substantial increase in magnetic moment due to electron charge transfer has not previously been reported in a Heusler alloy system.

Keywords

Cite

@article{arxiv.2306.14831,
  title  = {Large saturation moment and high ferromagnetic transition temperature in a structurally disordered inverse Heusler alloy Fe2RuGe},
  author = {Sudip Chakraborty and Shuvankar Gupta and Vidha Bhasin and Santanu Pakhira and Céline Barreteau and Jean-Claude Crivello and Shambhu Nath Jha and Dibyendu Bhattacharyya and Maxim Avdeev and Valérie Paul-Boncour and Jean-Marc Greneche and Eric Alleno and Chandan Mazumdar},
  journal= {arXiv preprint arXiv:2306.14831},
  year   = {2023}
}