Methods of electron transport in ab initio theory of spin stiffness

I. Turek, J. Kudrnovský, and V. Drchal
Phys. Rev. B 101, 134410 – Published 8 April 2020

Abstract

We present an ab initio theory of the spin-wave stiffness tensor for ordered and disordered itinerant ferromagnets with pair exchange interactions derived from a method of infinitesimal spin rotations. The resulting formula bears an explicit form of a linear-response coefficient which involves one-particle Green's functions and effective velocity operators encountered in a recent theory of electron transport. Application of this approach to ideal metal crystals yields more reliable values of the spin stiffness than traditional ill-converging real-space lattice summations. The formalism can also be combined with the coherent potential approximation for an effective-medium treatment of random alloys, which leads naturally to an inclusion of disorder-induced vertex corrections to the spin stiffness. The calculated concentration dependence of the spin-wave stiffness of random fcc Ni-Fe alloys can be ascribed to a variation of the reciprocal value of alloy magnetization. Calculations for random iron-rich bcc Fe-Al alloys reveal that their spin-wave stiffness is strongly reduced owing to the atomic ordering; this effect takes place due to weakly coupled local magnetic moments of Fe atoms surrounded by a reduced number of Fe nearest neighbors.

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  • Received 20 January 2020
  • Accepted 17 March 2020

DOI:https://doi.org/10.1103/PhysRevB.101.134410

©2020 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

I. Turek*

  • Institute of Physics of Materials, Czech Academy of Sciences, Žižkova 22, CZ-616 62 Brno, Czech Republic

J. Kudrnovský and V. Drchal

  • Institute of Physics, Czech Academy of Sciences, Na Slovance 2, CZ-182 21 Praha 8, Czech Republic

  • *turek@ipm.cz
  • kudrnov@fzu.cz
  • drchal@fzu.cz

See Also

Assessing different approaches to ab initio calculations of spin wave stiffness

O. Šipr, S. Mankovsky, and H. Ebert
Phys. Rev. B 101, 134409 (2020)

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Vol. 101, Iss. 13 — 1 April 2020

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