Skyrmion–antiskyrmion pair creation and annihilation in a cubic chiral magnet

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作者
Fengshan Zheng
Nikolai S. Kiselev
Luyan Yang
Vladyslav M. Kuchkin
Filipp N. Rybakov
Stefan Blügel
Rafal E. Dunin-Borkowski
机构
[1] Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons and Peter Grünberg Institute,Department of Physics
[2] Forschungszentrum Jülich,Department of Physics and Astronomy
[3] Spin-X Institute,Department of Physics
[4] School of Physics and Optoelectronics,undefined
[5] State Key Laboratory of Luminescent Materials and Devices,undefined
[6] Guangdong-Hong Kong-Macao Joint Laboratory of Optoelectronic and Magnetic Functional Materials,undefined
[7] South China University of Technology,undefined
[8] Peter Grünberg Institute and Institute for Advanced Simulation,undefined
[9] Forschungszentrum Jülich and JARA,undefined
[10] RWTH Aachen University,undefined
[11] Uppsala University,undefined
[12] KTH Royal Institute of Technology,undefined
来源
Nature Physics | 2022年 / 18卷
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摘要
A fundamental property of particles and antiparticles (such as electrons and positrons, respectively) is their ability to annihilate one another. A similar behaviour is predicted for magnetic solitons1—localized spin textures that can be distinguished by their topological index Q. Theoretically, magnetic topological solitons with opposite values of Q, such as skyrmions2 and their antiparticles (namely, antiskyrmions), are expected to be able to continuously merge and annihilate3. However, experimental verification of such particle–antiparticle pair production and annihilation processes has been lacking. Here we report the creation and annihilation of skyrmion–antiskyrmion pairs in an exceptionally thin film of the cubic chiral magnet of B20-type FeGe observed using transmission electron microscopy. Our observations are highly reproducible and are fully consistent with micromagnetic simulations. Our findings provide a new platform for the fundamental studies of particles and antiparticles based on magnetic solids and open new perspectives for practical applications of thin films of isotropic chiral magnets.
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页码:863 / 868
页数:5
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