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  5. Electrical detection and nucleation of a magnetic skyrmion in a magnetic tunnel junction observed via operando magnetic microscopy
 
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Electrical detection and nucleation of a magnetic skyrmion in a magnetic tunnel junction observed via operando magnetic microscopy

Source
arXiv
ISSN
2331-8422
Date Issued
2023-08-01
Author(s)
Larranaga, J. Urrestarazu
Sisodia, Naveen
Pham, Van Tuong
Di Manici, Ilaria
Masseboeuf, Aurelien
Garello, Kevin
Disdier, Florian
Fernandez, Bruno
Wintz, Sebastian
Weigand, Markus
Belmeguenai, Mohamed
Pizzini, Stefania
Sousa, Ricardo
Buda-Prejbeanu, Liliana
Gaudin, Gilles
Boulle, Olivier
Abstract
Magnetic skyrmions are topological spin textures which are envisioned as nanometre scale information carriers in magnetic memory and logic devices. The recent demonstration of room temperature stabilization of skyrmions and their current induced manipulation in industry compatible ultrathin films were first steps towards the realisation of such devices. However, important challenges remain regarding the electrical detection and the low-power nucleation of skyrmions, which are required for the read and write operations. Here, we demonstrate, using operando magnetic microscopy experiments, the electrical detection of a single magnetic skyrmion in a magnetic tunnel junction (MTJ) and its nucleation and annihilation by gate voltage via voltage control of magnetic anisotropy. The nucleated skyrmion can be further manipulated by both gate voltage and external magnetic field, leading to tunable intermediate resistance states. Our results unambiguously demonstrate the readout and voltage controlled write operations in a single MTJ device, which is a major milestone for low power skyrmion based technologies.
URI
https://doi.org/10.48550/arXiv.2308.00445
https://d8.irins.org/handle/IITG2025/18452
Subjects
magnetic skyrmion
Magnetic tunnel
Operando magnetic microscopy
MTJ
Magnetic anisotropy
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