4.5 Article

Magnetic Compton scattering study of Laves phase ZrFe2 and Sc doped ZrFe2: Experiment and Green function based relativistic calculations

期刊

JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
卷 454, 期 -, 页码 125-130

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jmmm.2018.01.069

关键词

X-ray scattering; Spin arrangement in magnetically ordered; materials; Local magnetic moment; Intermetallic compound

资金

  1. DAE-BRNS [2012/37P/43/BRNS]
  2. SERB [EMR/2016/001400]
  3. DST, New Delhi [DST/INSPIRE/04/2015/001258]
  4. SERB-DST, New Delhi
  5. UGC, New Delhi

向作者/读者索取更多资源

Spin momentum densities of ferromagnetic ZrFe2 and Zr0.8Sc0.2Fe2 have been measured using magnetic Compton scattering with 182.65 keV circularly polarized synchrotron radiations. Site specific spin moments, which are responsible for the formation of total spin moment, have been deduced from Compton line shapes. At room temperature, the computed spin moment of ZrFe2 is found to be slightly higher than that of Sc doped ZrFe2 which is in consensus with the magnetization data. To compare the experimental data, we have also computed magnetic Compton profiles (MCPs), total and partial spin projected density of states (DOS) and the site specific spin moments using spin-polarized relativistic Korringa-Kohn-Rostoker method. It is observed that the spin moment at Fe site is aligned antiparallel to that of Zr site in both ZrFe2 and Zr0.8Sc0.2Fe2. The MCP results when compared with vibrating sample magnetometer based magnetization data, show a very small contribution of orbital moment in the formation of total magnetic moments in both the compounds. The DOS of ferromagnetic ground state of ZrFe2 and Zr0.8Sc0.2Fe2 are interpreted on the basis of a covalent magnetic model beyond the Stoner rigid band model. It appears that on alloying between a magnetic and a non-magnetic partner (with low valence), a polarization develops on the non-magnetic atom which is anti-parallel to that of the magnetic atom. (C) 2018 Elsevier B.V. All rights reserved.

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