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Influence of spin fluctuations on structural phase transitions of iron

Authors :
Ning Wang
Thomas Hammerschmidt
Tilmann Hickel
Jutta Rogal
Ralf Drautz
Source :
Physical Review B. 107
Publication Year :
2023
Publisher :
American Physical Society (APS), 2023.

Abstract

The effect of spin fluctuations on the $\alpha$ (bcc) - $\gamma$ (fcc) - $\delta$ (bcc) structural phase transitions in iron is investigated with a tight-binding (TB) model. The orthogonal $d$-valent TB model is combined with thermodynamic integration, spin-space averaging and Hamiltonian Monte Carlo to compute the temperature-dependent free-energy difference between bcc and fcc iron. We demonstrate that the TB model captures experimentally observed phonon spectra of bcc iron at elevated temperatures. Our calculations show that spin fluctuations are crucial for both, the $\alpha$ - $\gamma$ and the $\gamma$ - $\delta$ phase transitions but they enter through different mechanisms. Spin fluctuations impact the $\alpha$ - $\gamma$ phase transition mainly via the magnetic/electronic free-energy difference between bcc and fcc iron. The $\gamma$ - $\delta$ phase transition, in contrast, is influenced by spin fluctuations only indirectly via the spin-lattice coupling. Combining the two mechanisms, we obtain both, the $\alpha$ - $\gamma$ and the $\gamma$ - $\delta$ phase transitions with our TB model. The calculated transition temperatures are in very good agreement with experimental values.

Details

ISSN :
24699969 and 24699950
Volume :
107
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi.dedup.....63a8d05f689e53f1104670d29c2982b2
Full Text :
https://doi.org/10.1103/physrevb.107.104108