Using antiferromagnets as active elements in spintronics requires the ability to manipulate and read-out the Néel vector orientation. Here we demonstrate for Mn2Au, a good conductor with a high ordering temperature suitable for applications, reproducible switching using current pulse generated bulk spin-orbit torques and read-out by magnetoresistance measurements. Reversible and consistent changes of the longitudinal resistance and planar Hall voltage of star-patterned epitaxial Mn2Au(001) thin films were generated by pulse current densities of ≃107 A/cm2. The symmetry of the torques agrees with theoretical predictions and a large read-out magnetoresistance effect of more than ≃6% is reproduced by ab initio transport calculations
Topological antiferromagnetic (AFM) spintronics is an emerging field of research, which exploits the...
Mn2Au is an important antiferromagnetic (AF) material for spintronics applications. Due to its very ...
We predict that a lateral electrical current in antiferromagnets can induce nonequilibrium Néel-orde...
International audienceThe continuous reduction in size of spintronic devices requires the developmen...
Electrical manipulation of antiferromagnets with specific symmetries offers the prospect of creating...
In antiferromagnetic spintronics, the read-out of the staggered magnetization or Néel vector is the ...
Current pulse driven Néel vector rotation in metallic antiferromagnets is one of the most promising ...
It is well established that it is possible to switch certain antiferromagnets electrically, yet the ...
The coupling of real and momentum space is utilized to tailor electronic properties of the collinear...
Revealing the properties of Mn2Au for antiferromagnetic spintronics V.M.T.S. Barthem1, C.V. Colin2,3...
It is well established that it is possible to switch certain antiferromagnets electrically, yet the ...
Voltage-controlled magnetic anisotropy and spin-orbit torques are promising and efficient methods of...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
A major step to implement antiferromagnetic Mn2Au in spintronics is to understand the exchange bias ...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
Topological antiferromagnetic (AFM) spintronics is an emerging field of research, which exploits the...
Mn2Au is an important antiferromagnetic (AF) material for spintronics applications. Due to its very ...
We predict that a lateral electrical current in antiferromagnets can induce nonequilibrium Néel-orde...
International audienceThe continuous reduction in size of spintronic devices requires the developmen...
Electrical manipulation of antiferromagnets with specific symmetries offers the prospect of creating...
In antiferromagnetic spintronics, the read-out of the staggered magnetization or Néel vector is the ...
Current pulse driven Néel vector rotation in metallic antiferromagnets is one of the most promising ...
It is well established that it is possible to switch certain antiferromagnets electrically, yet the ...
The coupling of real and momentum space is utilized to tailor electronic properties of the collinear...
Revealing the properties of Mn2Au for antiferromagnetic spintronics V.M.T.S. Barthem1, C.V. Colin2,3...
It is well established that it is possible to switch certain antiferromagnets electrically, yet the ...
Voltage-controlled magnetic anisotropy and spin-orbit torques are promising and efficient methods of...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
A major step to implement antiferromagnetic Mn2Au in spintronics is to understand the exchange bias ...
Antiferromagnets offer considerable potential for electronic device applications. This article revie...
Topological antiferromagnetic (AFM) spintronics is an emerging field of research, which exploits the...
Mn2Au is an important antiferromagnetic (AF) material for spintronics applications. Due to its very ...
We predict that a lateral electrical current in antiferromagnets can induce nonequilibrium Néel-orde...