论文标题

用于稳定的Antiskyrmion形成的磁各向异性的掺杂控制(Fe,ni)$ _ 3 $ p with $ s_4 $ symmetry

Doping control of magnetic anisotropy for stable antiskyrmion formation in schreibersite (Fe,Ni)$_3$P with $S_4$ symmetry

论文作者

Karube, Kosuke, Peng, Licong, Masell, Jan, Hemmida, Mamoun, von Nidda, Hans-Albrecht Krug, Kézsmárki, István, Yu, Xiuzhen, Tokura, Yoshinori, Taguchi, Yasujiro

论文摘要

磁性天空,类似涡旋的拓扑自旋纹理,引起了从基本物理学到Spintronics应用的广泛研究领域的广泛兴趣。最近,在非中心对称磁铁中以$ d_ {2 \ mathrm {d}} $或$ s_4 $对称的非中心对称磁铁中的相反拓扑费出现了越来越多的注意力。在这些磁铁中,各向异性Dzyaloshinskii-Moriya相互作用,单轴磁各向异性和磁性偶极相互作用之间的复杂相互作用会产生多种磁性结构。然而,反扰动与这些磁相互作用的稳定性之间的关系尚待阐明。在这项工作中,我们控制了Schreibersite的单轴磁各向异性(Fe,Ni)$ _ 3 $ p,用$ S_4 $对称的兴奋剂对对称性的对称,并研究了其对Antiskyrmions的稳定性的影响。我们的磁化测定研究在铁磁共振光谱方面支持,表明Ni含量的变化和4 $ d $过渡金属的轻微掺杂大大改变了磁各向异性。特别是,用PD掺杂会诱导易于轴各向异性,从而导致抗精神病的形成,而温度诱导的自旋重新定向在RH掺杂化合物中观察到。结合Lorentz透射电子显微镜和微磁模拟,我们定量分析了反对者mion的稳定性,作为单轴各向异性和脱氧能量的函数,并证明它们之间的微妙平衡是稳定反臂mions的必要平衡。

Magnetic skyrmions, vortex-like topological spin textures, have attracted much interest in a wide range of research fields from fundamental physics to spintronics applications. Recently, growing attention has also been paid to antiskyrmions emerging in opposite topological charge in non-centrosymmetric magnets with $D_{2\mathrm{d}}$ or $S_4$ symmetry. In these magnets, complex interplay among anisotropic Dzyaloshinskii-Moriya interaction, uniaxial magnetic anisotropy, and magnetic dipolar interactions generates a variety of magnetic structures. However, the relation between the stability of antiskyrmions and these magnetic interactions remains to be elucidated. In this work, we control the uniaxial magnetic anisotropy of schreibersite (Fe,Ni)$_3$P with $S_4$ symmetry by doping and investigate its impact on the stability of antiskyrmions. Our magnetometry study, supported by ferromagnetic resonance spectroscopy, shows that the variation of the Ni content and slight doping with 4$d$ transition metals considerably change the magnetic anisotropy. In particular, doping with Pd induces easy-axis anisotropy, giving rise to formation of antiskyrmions, while a temperature-induced spin reorientation is observed in a Rh-doped compound. In combination with Lorentz transmission electron microscopy and micromagnetic simulations, we quantitatively analyze the stability of antiskyrmion as functions of uniaxial anisotropy and demagnetization energy, and demonstrate that subtle balance between them is necessary to stabilize the antiskyrmions.

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