Realization of zero-field skyrmions with high-density via electromagnetic manipulation in Pt/Co/Ta multilayers
Получение высокоплотных скирмионов при нулевом поле посредством электромагнитного управления в многослойных структурах Pt/Co/Ta
2017-11-13
SCID: 54.1/bud5mwem
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Lorentz transmission electron microscopyPt/Co/Ta multilayerselectromagnetic manipulationhigh-density skyrmionszero-field skyrmions
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Abstract (AI)
Taking advantage of the electron-current ability to generate, stabilize, and manipulate skyrmions prompts the application of skyrmion multilayers in room-temperature spintronic devices. In this study, the robust high-density skyrmions are electromagnetically generated from Pt/Co/Ta multilayers using Lorentz transmission electron microscopy. The skyrmion density is tunable and can be significantly enhanced. Remarkably, these generated skyrmions after optimized manipulation sustain at zero field with both the in-plane current and perpendicular magnetic field being switched off. The skyrmion generation and manipulation method demonstrated in this study opens up an alternative way to engineer skyrmion-based devices. The results also provide key data for further theoretical study to discover the nature of the interaction between the electric current and different spin configurations.
Key Findings
1
After optimized manipulation, the generated skyrmions remained stable at zero field with both in-plane current and perpendicular magnetic field switched off.
2
Robust, high-density skyrmions were electromagnetically generated in Pt/Co/Ta multilayers using Lorentz transmission electron microscopy.
3
The demonstrated generation and manipulation approach provides an alternative route for engineering skyrmion-based spintronic devices.
4
The results supply data for investigating interactions between electric currents and different spin configurations.
5
The skyrmion density could be tuned and significantly enhanced through electromagnetic manipulation.
Research Object
zero-field high-density skyrmions in Pt/Co/Ta multilayers
Research Subject
electromagnetic generation, density enhancement, manipulation, and zero-field stability of skyrmions
Publication Details
Publication Date
2017-11-13
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