arXiv · 2601.00230
Deterministic Helicity Locking of Bloch Skyrmions in Centrosymmetric Systems
Abstract
Magnetic skyrmions in centrosymmetric materials exhibit Bloch-type spin textures with degenerate helicity states due to the absence of Dzyaloshinskii Moriya interaction (DMI), resulting in random nucleation and uncontrolled chirality. Here, we present a comprehensive micromagnetic study demonstrating a fully DMI free strategy for deterministic helicity control by interfacing ferromagnetic (FM) stripes or notch structures with centrosymmetric magnetic (CM) films. We first show that a geometrically constrained configuration comprising two FM stripes with opposite in-plane magnetizations stabilizes skyrmions with a selected helicity, either clockwise (CW) or counterclockwise (CCW). We further extend this concept to achieve deterministic nucleation of CW or CCW skyrmions using current pulses applied to an FM notch patterned on the CM film. The combined effects of the FM stripe/notch geometry and interfacial exchange coupling generate dipolar fields that lift the helicity degeneracy, enabling controlled formation of skyrmions with fixed chirality. These results establish FM/CM heterostructures as a robust, DMI-free platform for deterministic generation and guided motion of helicity-locked skyrmions, opening new pathways for advanced spintronic applications.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jayaseelan Dhakshinamoorthy, Hitesh Chhabra, Ajaya K Nayak. 2026-01-01. Deterministic Helicity Locking of Bloch Skyrmions in Centrosymmetric Systems. https://arxiv.org/abs/2601.00230
Cite the original work for its findings. Save a collection to share your selection of sources.