论文标题

控制Skyrmion主持人候选人的Dzyaloshinskii-Moriya互动FEPD $ _ {1-x} $ pt $ _x $ mo $ $ _3 $ n

Controlling Dzyaloshinskii-Moriya interactions in the skyrmion host candidates FePd$_{1-x}$Pt$_x$Mo$_3$N

论文作者

Kautzsch, Linus, Bocarsly, Joshua D., Felser, Claudia, Wilson, Stephen D., Seshadri, Ram

论文摘要

众所周知,在手性立方空间组描述的结构中结晶的铁磁体结晶,包括具有B20或$β$ -MN结构的化合物,可容纳长期的手性旋转纹理,例如天空晶格。这些自旋纹理通过铁磁交换与反对称Dyzaloshinskii-Moriya(DM)交换之间的竞争稳定,这通过与高原子数元素相关的自旋轨道耦合增强。对于实际应用,希望找到可以在易于接近的温度下托管紧凑型Skyrmion Lattices的材料。 Here, we report on the crystal chemistry and magnetic phase diagrams of a family of compounds with the filled $β$-Mn structure, FePd$_{1-x}$Pt$_x$Mo$_3$N with $T_C$ ranging from 175 K to 240 K. DC and AC magnetization measurements reveal magnetic phase diagrams consistent with the formation of a skyrmion pocket just below $T_C$.铁磁和DM交换的幅度是从相图确定的,这表明可以使用增加量的PT的引入来增加自旋轨道耦合,以控制预期的Skyrimion晶格参数在140 nm和65 nm之间,同时增加$ T_C $ $ T_C $。

Ferromagnets crystallizing in structures described by chiral cubic space groups, including compounds with the B20 or $β$-Mn structures, are known to host long-period chiral spin textures such as skyrmion lattices. These spin textures are stabilized by a competition between ferromagnetic exchange and antisymmetric Dyzaloshinskii-Moriya (DM) exchange, which is enhanced by the spin-orbit coupling associated with high-atomic-number elements. For real-world application, it is desirable to find materials that can host compact skyrmion lattices at readily accessible temperatures. Here, we report on the crystal chemistry and magnetic phase diagrams of a family of compounds with the filled $β$-Mn structure, FePd$_{1-x}$Pt$_x$Mo$_3$N with $T_C$ ranging from 175 K to 240 K. DC and AC magnetization measurements reveal magnetic phase diagrams consistent with the formation of a skyrmion pocket just below $T_C$. The magnitudes of ferromagnetic and DM exchanges are determined from the phase diagrams, demonstrating that the introduction of increasing amounts of Pt can be used to increase spin-orbit coupling in order to control the expected skyrmion lattice parameter between 140 nm and 65 nm while simultaneously increasing $T_C$.

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