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Critical phenomenon of the near room temperature skyrmion material FeGe.


ABSTRACT: The cubic B20 compound FeGe, which exhibits a near room temperature skyrmion phase, is of great importance not only for fundamental physics such as nonlinear magnetic ordering and solitons but also for future application of skyrmion states in spintronics. In this work, the critical behavior of the cubic FeGe is investigated by means of bulk dc-magnetization. We obtain the critical exponents (??=?0.336?±?0.004, ??=?1.352?±?0.003 and ??=?5.276?±?0.001), where the self-consistency and reliability are verified by the Widom scaling law and scaling equations. The magnetic exchange distance is found to decay as r(-4.9), which is close to the theoretical prediction of 3D-Heisenberg model (r(-5)). The critical behavior of FeGe indicates a short-range magnetic interaction. Meanwhile, the critical exponents also imply an anisotropic magnetic coupling in this system.

SUBMITTER: Zhang L 

PROVIDER: S-EPMC4772635 | biostudies-literature | 2016 Feb

REPOSITORIES: biostudies-literature

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Critical phenomenon of the near room temperature skyrmion material FeGe.

Zhang Lei L   Han Hui H   Ge Min M   Du Haifeng H   Jin Chiming C   Wei Wensen W   Fan Jiyu J   Zhang Changjin C   Pi Li L   Zhang Yuheng Y  

Scientific reports 20160229


The cubic B20 compound FeGe, which exhibits a near room temperature skyrmion phase, is of great importance not only for fundamental physics such as nonlinear magnetic ordering and solitons but also for future application of skyrmion states in spintronics. In this work, the critical behavior of the cubic FeGe is investigated by means of bulk dc-magnetization. We obtain the critical exponents (β = 0.336 ± 0.004, γ = 1.352 ± 0.003 and β = 5.276 ± 0.001), where the self-consistency and reliability a  ...[more]

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