Nucleation of magnetic skyrmions on curvilinear surfaces using local magnetic fields

Fuente: arXiv
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Autori principali: Koraltan, Sabri, Sunny, Joe, Darwin, Emily, Rothhardt, Daniel, Peremadathil-Pradeep, Reshma, Krupiński, Michał, Gokita, Takeaki, Jurczyk, Jakub, Fernández-Pacheco, Amalio, Weigand, Markus, Wintz, Sebastian, Suess, Dieter, Hug, Hans Josef, Albrecht, Manfred
Natura: Preprint
Pubblicazione: 2025
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author Koraltan, Sabri
Sunny, Joe
Darwin, Emily
Rothhardt, Daniel
Peremadathil-Pradeep, Reshma
Krupiński, Michał
Gokita, Takeaki
Jurczyk, Jakub
Fernández-Pacheco, Amalio
Weigand, Markus
Wintz, Sebastian
Suess, Dieter
Hug, Hans Josef
Albrecht, Manfred
author_facet Koraltan, Sabri
Sunny, Joe
Darwin, Emily
Rothhardt, Daniel
Peremadathil-Pradeep, Reshma
Krupiński, Michał
Gokita, Takeaki
Jurczyk, Jakub
Fernández-Pacheco, Amalio
Weigand, Markus
Wintz, Sebastian
Suess, Dieter
Hug, Hans Josef
Albrecht, Manfred
contents Magnetic skyrmions stabilized by interfacial Dzyaloshinskii-Moriya interactions (DMI) are promising candidates for applications in memory, logic, and neuromorphic computing. Beyond planar films, theoretical studies predict that curvature can influence skyrmion stability by introducing effective chiral interactions. Here, we investigate skyrmion formation on self-assembled polystyrene particles coated with Pt/Co/Ta multilayers by magnetron sputtering. Vibrating sample magnetometry reveals clear differences in the magnetic reversal behavior of the curvilinear film compared to that of the planar counterpart. Using non-invasive imaging methods such as scanning transmission X-ray microscopy and high-sensitivity in-vacuum magnetic force microscopy (MFM) with low moment magnetic tipcs, we observe a maze domain pattern for the planar films while the curvilinear film reveals three-dimensional spiraling stripe states. By employing a conventional MFM operating under ambient conditions requiring a tip with a higher magnetic moment, we demonstrate that these stripe states can rupture into metastable skyrmions located at the top of the spherical particles by applying consecutive scans. Our results demonstrate that curvilinear films offer an accessible platform for stabilizing single skyrmions using local magnetic field stimuli, opening pathways to study the interplay between interfacial and curvature-induced DMIs and enabling controlled skyrmion writing on three-dimensional magnetic architectures.
format Preprint
id arxiv_https___arxiv_org_abs_2511_22557
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nucleation of magnetic skyrmions on curvilinear surfaces using local magnetic fields
Koraltan, Sabri
Sunny, Joe
Darwin, Emily
Rothhardt, Daniel
Peremadathil-Pradeep, Reshma
Krupiński, Michał
Gokita, Takeaki
Jurczyk, Jakub
Fernández-Pacheco, Amalio
Weigand, Markus
Wintz, Sebastian
Suess, Dieter
Hug, Hans Josef
Albrecht, Manfred
Mesoscale and Nanoscale Physics
Magnetic skyrmions stabilized by interfacial Dzyaloshinskii-Moriya interactions (DMI) are promising candidates for applications in memory, logic, and neuromorphic computing. Beyond planar films, theoretical studies predict that curvature can influence skyrmion stability by introducing effective chiral interactions. Here, we investigate skyrmion formation on self-assembled polystyrene particles coated with Pt/Co/Ta multilayers by magnetron sputtering. Vibrating sample magnetometry reveals clear differences in the magnetic reversal behavior of the curvilinear film compared to that of the planar counterpart. Using non-invasive imaging methods such as scanning transmission X-ray microscopy and high-sensitivity in-vacuum magnetic force microscopy (MFM) with low moment magnetic tipcs, we observe a maze domain pattern for the planar films while the curvilinear film reveals three-dimensional spiraling stripe states. By employing a conventional MFM operating under ambient conditions requiring a tip with a higher magnetic moment, we demonstrate that these stripe states can rupture into metastable skyrmions located at the top of the spherical particles by applying consecutive scans. Our results demonstrate that curvilinear films offer an accessible platform for stabilizing single skyrmions using local magnetic field stimuli, opening pathways to study the interplay between interfacial and curvature-induced DMIs and enabling controlled skyrmion writing on three-dimensional magnetic architectures.
title Nucleation of magnetic skyrmions on curvilinear surfaces using local magnetic fields
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2511.22557