English

Room Temperature Magnetic Skyrmions in Gradient-Composition Engineered CoPt Single Layers

Mesoscale and Nanoscale Physics 2024-11-04 v4

Abstract

Topologically protected magnetic skyrmions in magnetic materials are stabilized by interfacial or bulk Dzyaloshinskii-Moriya interaction (DMI). Interfacial DMI decays with increase of the magnetic layer thickness in just a few nanometers and bulk DMI typically stabilizes magnetic skyrmions at low temperatures. Consequently, more flexibility in manipulation of DMI is required for utilizing nanoscale skyrmions in energy efficient memory and logic devices at room temperature (RT). Here, we demonstrate the observation of RT skyrmions stabilized by gradient DMI (g-DMI) in composition gradient engineered CoPt single layer films by employing topological Hall effect, magnetic force microscopy, and nitrogen vacancy scanning magnetometry. Skyrmions remain stable at a wide range of applied magnetic fields and are confirmed to be nearly Bloch-type from micromagnetic simulation and analytical magnetization reconstruction. Furthermore, we observe skyrmion pairs which may be explained by skyrmion-antiskyrmion interactions. Our findings expand the family of magnetic materials hosting RT magnetic skyrmions by tuning g-DMI via gradient polarity and choice of magnetic elements.

Keywords

Cite

@article{arxiv.2405.09632,
  title  = {Room Temperature Magnetic Skyrmions in Gradient-Composition Engineered CoPt Single Layers},
  author = {Adam Erickson and Qihan Zhang and Hamed Vakili and Chaozhong Li and Suchit Sarin and Suvechhya Lamichhane and Lanxin Jia and Ilja Fescenko and Edward Schwartz and Sy-Hwang Liou and Jeffrey E. Shield and Guozhi Chai and Alexey A. Kovalev and Jingsheng Chen and Abdelghani Laraoui},
  journal= {arXiv preprint arXiv:2405.09632},
  year   = {2024}
}
R2 v1 2026-06-28T16:28:42.373Z