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MnSi 中 skyrmion 晶格对立方磁晶各向异性的响应。

Response of the Skyrmion Lattice in MnSi to Cubic Magnetocrystalline Anisotropies.

机构信息

Physik Department, Technische Universität München, D-85748 Garching, Germany.

Institute for Theoretical Physics, Universität zu Köln, D-50937 Köln, Germany.

出版信息

Phys Rev Lett. 2018 Nov 2;121(18):187205. doi: 10.1103/PhysRevLett.121.187205.

Abstract

We report high-precision small-angle neutron scattering of the orientation of the Skyrmion lattice in a spherical sample of MnSi under systematic changes of the magnetic field direction. For all field directions the Skyrmion lattice may be accurately described as a triple-Q[over →] state, where the modulus |Q[over →]| is constant and the wave vectors enclose rigid angles of 120°. Along a great circle across ⟨100⟩, ⟨110⟩, and ⟨111⟩ the normal to the Skyrmion-lattice plane varies systematically by ±3° with respect to the field direction, while the in-plane alignment displays a reorientation by 15° for magnetic field along ⟨100⟩. Our observations are qualitatively and quantitatively in excellent agreement with an effective potential, which is determined by the symmetries of the tetrahedral point group T and includes contributions up to sixth order in spin-orbit coupling, providing a full account of the effect of cubic magnetocrystalline anisotropies on the Skyrmion lattice in MnSi.

摘要

我们报道了在 MnSi 球形样品中,通过系统改变磁场方向,对 skyrmion 晶格取向的高精度小角度中子散射。对于所有的磁场方向,Skyrmion 晶格都可以被准确地描述为三重 Q[over →]态,其中 Q[over →]的模长|Q[over →]|是常数,并且波矢封闭 120°的刚性角。沿着穿过 ⟨100⟩、 ⟨110⟩和 ⟨111⟩的大圆,Skyrmion 晶格平面的法线相对于磁场方向系统地变化了±3°,而在磁场沿 ⟨100⟩的情况下,面内排列发生了 15°的重定向。我们的观察结果在定性和定量上都与有效势非常吻合,该有效势由四面体点群 T 的对称性决定,包括自旋轨道耦合的六阶贡献,充分说明了立方磁晶各向异性对 MnSi 中 Skyrmion 晶格的影响。

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