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通过曲率调整布洛赫点畴壁的能量景观。

Tailoring the energy landscape of a bloch point domain wall with curvature.

作者信息

Ruiz-Gómez Sandra, Abert Claas, Morales-Fernández Pamela, Fernández-González Claudia, Koraltan Sabri, Danesi Lukas, Suess Dieter, Varela María, Sánchez-Santolino Gabriel, Bagués Núria, Foerster Michael, Niño Miguel Ángel, Mandziak Anna, Wilgocka-Ślęzak Dorota, Nita Pawel, Koenig Markus, Seifert Sebastian, Hierro-Rodriguez Aurelio, Fernández-Pacheco Amalio, Donnelly Claire

机构信息

Max Planck Institute for Chemical Physics of Solids, Dresden, Germany.

ALBA Synchrotron Light Source, CELLS, Cerdanyola del Valles, Barcelona, Spain.

出版信息

Nat Commun. 2025 Aug 11;16(1):7422. doi: 10.1038/s41467-025-62705-x.

Abstract

Topological defects, or singularities, play a key role in the statics and dynamics of complex systems. In magnetism, Bloch point singularities represent point defects that mediate the nucleation of textures such as skyrmions and hopfions. While these textures are typically stabilised in chiral magnets, the influence of chirality and symmetry breaking on Bloch point singularities remains relatively unexplored. Here, we harness advanced three-dimensional nanofabrication to explore the influence of symmetry breaking on Bloch point textures by introducing controlled nano-curvature in a ferromagnetic nanowire. Combining X-ray magnetic microscopy with the application of in situ magnetic fields, we demonstrate that Bloch point singularity-containing domain walls are stabilised in straight regions of the sample, and determine that curvature can be used to tune the energy landscape of the Bloch points. Not only are we able to pattern pinning points but, by controlling the gradient of curvature, we define asymmetric potential wells to realise a robust Bloch point texture shift-register with non-reciprocal behaviour. These insights into the influence of symmetry on singularities offer a route to the controlled nucleation and propagation of topological textures, providing opportunities for logic and computing devices.

摘要

拓扑缺陷,即奇点,在复杂系统的静力学和动力学中起着关键作用。在磁性领域,布洛赫点奇点代表点缺陷,介导诸如斯格明子和霍普费子等纹理的成核。虽然这些纹理通常在手性磁体中得以稳定,但手性和对称性破缺对布洛赫点奇点的影响仍相对未被探索。在此,我们利用先进的三维纳米制造技术,通过在铁磁纳米线中引入可控的纳米曲率来探索对称性破缺对布洛赫点纹理的影响。将X射线磁显微镜与原位磁场的应用相结合,我们证明了含有布洛赫点奇点的畴壁在样品的直线区域中得以稳定,并确定曲率可用于调节布洛赫点的能量景观。我们不仅能够对钉扎点进行图案化,而且通过控制曲率梯度,我们定义了不对称势阱,以实现具有非互易行为的稳健布洛赫点纹理移位寄存器。这些关于对称性对奇点影响的见解为拓扑纹理的可控成核和传播提供了一条途径,为逻辑和计算设备提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af93/12339691/1bd67b91e961/41467_2025_62705_Fig1_HTML.jpg

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