Resonance-Assisted Depinning of DMI-Stabilized Néel Domain Walls in Stepped Perpendicular Magnetic Nanowires Driven by Pulsed Currents

Current-driven manipulation of magnetic domain walls (DWs) in perpendicularly magnetized nanowires is promising for spintronic memory and logic applications. In this work, micromagnetic simulations are used to investigate the depinning of DMI-stabilized Néel domain walls from a stepped pinning site under unipolar square-pulse current excitation. The effects of current density, pulse freque

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Publication Details

Journal
Nanomaterials
Published
2026-09-10
DOI
https://doi.org/10.3390/nano16181136
Primary Topic
Magnetic properties of thin films
Type
article
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article

Resonance-Assisted Depinning of DMI-Stabilized Néel Domain Walls in Stepped Perpendicular Magnetic Nanowires Driven by Pulsed Currents

Salim Al-Kamiyani, Mohammed Al Bahri, Eduardo Saavedra, Felipe Tejo et al.
Nanomaterials
Magnetic properties of thin films
article

Resonance-Assisted Depinning of DMI-Stabilized Néel Domain Walls in Stepped Perpendicular Magnetic Nanowires Driven by Pulsed Currents

Salim Al-Kamiyani, Mohammed Al Bahri, Eduardo Saavedra, Felipe Tejo, D. Laroze
article en

Abstract

Current-driven manipulation of magnetic domain walls (DWs) in perpendicularly magnetized nanowires is promising for spintronic memory and logic applications. In this work, micromagnetic simulations are used to investigate the depinning of DMI-stabilized Néel domain walls from a stepped pinning site under unipolar square-pulse current excitation. The effects of current density, pulse freque

NanomaterialsVol. 16(18)
University of Tarapacá (CL), College of Applied Sciences, Nizwa (OM), Universidad Central de Chile (CL), A'Sharqiyah University, University of Chile (CL)
Sustainable cities and communities
Openalex Percentile: Top 13%
Magnetic properties of thin films
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Resonance-Assisted Depinning of DMI-Stabilized Néel Domain Walls in Stepped Perpendicular Magnetic Nanowires Driven by Pulsed Currents — Salim Al-Kamiyani, Mohammed Al Bahri, et al. · Nanomaterials (2026) | TGRS Research Map | TGRS