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首页> 外文期刊>Science Advances >Disordered skyrmion phase stabilized by magnetic frustration in a chiral magnet
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Disordered skyrmion phase stabilized by magnetic frustration in a chiral magnet

机译:通过手性磁体中的磁挫折作用稳定的无序的天胶离子相

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Magnetic skyrmions are vortex-like topological spin textures often observed to form a triangular-lattice skyrmion crystal in structurally chiral magnets with the Dzyaloshinskii-Moriya interaction. Recently, β-Mn structure–type Co-Zn-Mn alloys were identified as a new class of chiral magnet to host such skyrmion crystal phases, while β-Mn itself is known as hosting an elemental geometrically frustrated spin liquid. We report the intermediate composition system Co7Zn7Mn6 to be a unique host of two disconnected, thermal-equilibrium topological skyrmion phases; one is a conventional skyrmion crystal phase stabilized by thermal fluctuations and restricted to exist just below the magnetic transition temperature Tc, and the other is a novel three-dimensionally disordered skyrmion phase that is stable well below Tc. The stability of this new disordered skyrmion phase is due to a cooperative interplay between the chiral magnetism with the Dzyaloshinskii-Moriya interaction and the frustrated magnetism inherent to β-Mn.
机译:磁性天rm是类似于涡旋的拓扑自旋纹理,通常在具有Dzyaloshinskii-Moriya相互作用的结构手性磁铁中观察到形成三角晶格的天rm离子晶体。最近,β-Mn结构类型的Co-Zn-Mn合金被确定为一种新型的手性磁体,可以容纳这种天体离子晶体相,而β-Mn本身则可以容纳一种几何上受挫的元素自旋液体。我们报告中间组成系统Co7Zn7Mn6是两个不连续的,热平衡拓扑天空标本相的唯一宿主。一种是通过热波动稳定并限制在正好低于磁转变温度Tc存在的常规天蝎子晶体相,另一种是稳定在Tc以下的新型三维无序天蝎子晶体相。这种新的无序的Skyrmion相的稳定性是由于具有Dzyaloshinskii-Moriya相互作用的手性磁性与β-Mn固有的受阻磁性之间的相互作用。

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