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- W2564355660 abstract "The cubic noncentrosymmetric structure of the B20 compounds produces the helical (homochiral) structure with the wave vector ${k}_{s}=D/J$ balanced by the competition of two interactions: the large ferromagnetic exchange interaction $J$ and small antisymmetric Dzyaloshinskii-Moriya interaction $D$. The difference in the energies between the ferromagnetic collinear and helical states can be experimentally measured by the critical magnetic field ${H}_{c2}$ needed to transform the helix into the field-induced ferromagnet. We show that the cubic anisotropy, first, can limit the stability of the helix phase in the range of small ${k}_{s}$ and, second, makes its own contribution to the value of the critical field ${H}_{c2}$. We illustrate our findings taking an example of a transformation of the helix structure to the ferromagnet at $xensuremath{rightarrow}{x}_{c}$ in the solid solutions ${mathrm{Fe}}_{1ensuremath{-}x}{mathrm{Co}}_{x}mathrm{Ge}$. We demonstrate that the mechanism of the transformation is realized via the competition between the cubic anisotropy and the Dzyaloshinskii-Moriya interaction." @default.
- W2564355660 created "2017-01-06" @default.
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- W2564355660 date "2015-06-29" @default.
- W2564355660 modified "2023-10-14" @default.
- W2564355660 title "From spiral to ferromagnetic structure in B20 compounds: Role of cubic anisotropy" @default.
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- W2564355660 doi "https://doi.org/10.1103/physrevb.91.224429" @default.
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