Antiferromagnets offer considerable potential for electronic device applications. This article reviews recent demonstrations of spin manipulation in antiferromagnetic devices using applied electrical currents. Due to spin-orbit coupling in environments with particular crystalline or structural symmetries, the electric current can induce an effective magnetic field with a sign that alternates on the lengthscale of the unit cell. The staggered effective field provides an efficient mechanism for switching antiferromagnetic domains and moving antiferromagnetic domain walls, with writing speeds in the terahertz regime
© 2018 American Association for the Advancement of Science. All rights reserved. The speed of writin...
International audienceAntiferromagnetic materials could represent the future of spintronic applicati...
The mathematical symbols in the above Abstract field do not display correctly. Please see the attac...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
© 2018 The Publisher. Ferromagnets are key materials for sensing and memory applications. In contras...
A large non-adiabatic spin-transfer torque in an antiferromagnetically coupled ferrimagnet can provi...
Antiferromagnetic spintronics is an emerging research field whose focus is on the electrical and opt...
Spin orbitronics and Dirac quasiparticles are two fields of condensed matter physics initiated indep...
Antiferromagnets are common in nature and just like ferromagnets posses a long-range magnetic order....
Antiferromagnetic spintronics is an emerging topic in spintronics that is attracting interest due to...
Announcement of 2022 IEEE Magnetics Society IEEE Distinguished LecturersThe ever-increasing demand f...
Exploiting both spin and charge of the electron in electronic micordevices has lead to a tremendous ...
Summary: Spin currents can make your computer energy efficient and ultrafast Have you noticed that...
© 2018 American Association for the Advancement of Science. All rights reserved. The speed of writin...
International audienceAntiferromagnetic materials could represent the future of spintronic applicati...
The mathematical symbols in the above Abstract field do not display correctly. Please see the attac...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
© 2018 The Publisher. Ferromagnets are key materials for sensing and memory applications. In contras...
A large non-adiabatic spin-transfer torque in an antiferromagnetically coupled ferrimagnet can provi...
Antiferromagnetic spintronics is an emerging research field whose focus is on the electrical and opt...
Spin orbitronics and Dirac quasiparticles are two fields of condensed matter physics initiated indep...
Antiferromagnets are common in nature and just like ferromagnets posses a long-range magnetic order....
Antiferromagnetic spintronics is an emerging topic in spintronics that is attracting interest due to...
Announcement of 2022 IEEE Magnetics Society IEEE Distinguished LecturersThe ever-increasing demand f...
Exploiting both spin and charge of the electron in electronic micordevices has lead to a tremendous ...
Summary: Spin currents can make your computer energy efficient and ultrafast Have you noticed that...
© 2018 American Association for the Advancement of Science. All rights reserved. The speed of writin...
International audienceAntiferromagnetic materials could represent the future of spintronic applicati...
The mathematical symbols in the above Abstract field do not display correctly. Please see the attac...