4.6 Article

Magnetic exchange and susceptibilities in fcc iron: A supercell dynamical mean-field theory study

期刊

PHYSICAL REVIEW B
卷 98, 期 4, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.98.045138

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  1. Russian Science Foundation [14-22-00004]
  2. Russian Science Foundation [14-22-00004] Funding Source: Russian Science Foundation

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We study the momentum and temperature dependencies of magnetic susceptibilities and magnetic exchange in paramagnetic fcc iron by a combination of density functional theory and supercell dynamical mean-field theory (DFT+DMFT). We find that in agreement with experimental results the antiferromagnetic correlations with the wave vector close to (0, 0, 2 pi) dominate at lowtemperatures (as was also obtained previously theoretically), while the antiferromagnetic and ferromagnetic correlations closely compete at the temperatures T similar to 1000 K, where gamma-iron exists in nature. Inverse staggered susceptibility has linear temperature dependence at low temperatures, with negative Weiss temperature theta(stagg) approximate to -340 K; the inverse local susceptibility is also linear at not too low temperatures, showing well formed local moments. Analysis of magnetic exchange shows that the dominant contribution comes from first two coordination spheres. In agreement with the analysis of the susceptibility, the nearest-neighbor exchange is found to be antiferromagnetic at low temperatures, while at temperature of the alpha-gamma structural phase transition its absolute value becomes small, and the system appears on the boundary between the regimes with strongest antiferro-and ferromagnetic correlations.

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