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Half-hedgehog spin textures in sub-100 nm soft magnetic nanodots

机译:Half-hedgehog旋转纹理子- 100 nm软磁nanodots

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摘要

Topologically non-trivial structures such as magnetic skyrmions are nanometric spin textures of outstanding potential for spintronic applications due to their unique features. It is well known that Neel skyrmions of definite chirality are stabilized by the Dzyaloshinskii-Moriya exchange interaction (DMI) in bulk non-centrosymmetric materials or ultrathin films with strong spin-orbit coupling at the interface. In this work, we show that soft magnetic (permalloy) hemispherical nanodots are able to host three-dimensional chiral structures (half-hedgehog spin textures) with non-zero tropological charge. They are observed at room temperature, in absence of DMI interaction and they can be further stabilized by the magnetic field arising from the Magnetic Force Microscopy probe. Micromagnetic simulations corroborate the experimental data. Our work implies the existence of a new degree of freedom to create and manipulate complex 3D spin-textures in soft magnetic nanodots and opens up future possibilities to explore their magnetization dynamics.
机译:拓扑简单的结构等磁skyrmions nanometric旋转纹理自旋电子的潜力应用程序由于其独特的特性。众所周知,奈尔skyrmions定手性是稳定的Dzyaloshinskii-Moriya交换相互作用(DMI)散装或non-centrosymmetric材料超薄的电影在手性耦合在接口。磁(坡莫合金)半球形nanodots能够举办三维手性结构(half-hedgehog旋转纹理)和非零道德。对于温度,在缺乏DMI交互和他们可以进一步稳定磁场字段由磁力显微镜调查。实验数据。一个新的创造和自由度操作复杂的3 d spin-textures柔软磁nanodots和开辟了未来可能性,探索其磁化动力学。

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