Noncoplanar multiple- Q spin textures by itinerant frustration: Effects of single-ion anisotropy and bond-dependent anisotropy

S. Hayami, Y. Motome
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引用次数: 16

Abstract

We theoretically investigate multiple-$Q$ spin textures, which are composed of superpositions of spin density waves with different wave numbers, for an effective spin model of centrosymmetric itinerant magnets. Our focus is on the interplay between biquadratic interactions arising from the spin-charge coupling and magnetic anisotropy caused by the spin-orbit coupling. Taking into account two types of the magnetic anisotropy, single-ion anisotropy and bond-dependent anisotropy, we elucidate magnetic phase diagrams for an archetypal triangular-lattice system in the absence and presence of an external magnetic field. In the case of the single-ion anisotropy, we find a plethora of multiple-$Q$ instabilities depending on the strength and the sign of the anisotropy (easy plane or easy axis), including a skyrmion crystal with topological number of two. In an external magnetic field, we find that a skyrmion crystal with topological number of one is stabilized by the in-plane (out-of-plane) magnetic field under the easy-plane (easy-axis) anisotropy. We also examine the stability of the field-induced skyrmion crystal by rotating the field direction. As a biproduct, we show that a meron crystal with the skyrmion number of one half appears in the presence of the biquadratic interaction and the easy-axis anisotropy. Meanwhile, we find that the bond-dependent anisotropy also stabilizes both types of skyrmion crystals. We show that, however, for the skyrmion crystal with topological number of one, Bloch- and Neel-type skyrmion crystals are selectively realized depending on the sign of the bond-dependent anisotropy. Moreover, we find yet another multiple-$Q$ states, including a meron crystal and a double meron crystal with the skyrmion number of one. The systematic investigation will provide a reference to complex magnetic textures in centrosymmetric magnetic metals.
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流动受挫的非共面多q自旋织构:单离子各向异性和键相关各向异性的影响
我们从理论上研究了由不同波数的自旋密度波叠加而成的多$Q$自旋织构,以建立中心对称流动磁体的有效自旋模型。我们的重点是由自旋-电荷耦合引起的双二次相互作用与自旋-轨道耦合引起的磁各向异性之间的相互作用。考虑到两种类型的磁各向异性,单离子各向异性和键相关的各向异性,我们阐明了一个原型三角晶格系统在没有和存在外磁场的情况下的磁相图。在单离子各向异性的情况下,我们发现了大量的多$Q$不稳定性,这取决于各向异性的强度和符号(易平面或易轴),包括拓扑数为2的skyrmion晶体。在外加磁场中,我们发现拓扑数为1的斯基子晶体在易面(易轴)各向异性下被面内(面外)磁场稳定。我们还通过旋转场的方向来检验场诱导斯基米子晶体的稳定性。作为双积,我们证明了在双二次相互作用和易轴各向异性存在的情况下,会出现一个斯基子数为1 / 2的介子晶体。同时,我们发现键相关的各向异性也稳定了这两种类型的斯基米子晶体。然而,我们表明,对于拓扑数为1的斯基米子晶体,根据键相关各向异性的符号,可以选择性地实现Bloch型和neel型斯基米子晶体。此外,我们还发现了另一种多Q态,包括一介子晶体和一介子数为1的双介子晶体。系统的研究将为中心对称磁性金属中的复杂磁织构提供参考。
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