The magnetic anisotropy of antiferromagnets plays a crucial role in stabilizing the magnetization of many spintronic devices. In noncollinear antiferromagnets such as IrMn, the symmetry and temperature dependence of the effective anisotropy are poorly understood. Theoretical calculations and experimental measurements of the effective anisotropy constant for IrMn differ by two orders of magnitude, while the symmetry has been inferred as uniaxial in contradiction to the assumed relationship between crystallographic symmetry and temperature dependence of the anisotropy from the Callen-Callen law. In this Rapid Communication, we determine the effective anisotropy energy surface of L12-IrMn3 using an atomistic spin model and constrained Monte Ca...
There has been considerable interest in spin-orbit torques for the purpose of manipulating the magne...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) h...
The finite size and temperature dependent properties of antiferromagnets are of critical importance ...
The magnetic anisotropy of antiferromagnets plays a crucial role in stabilizing the magnetization of...
We perform an ab initio study of the ordered phases of IrMn and IrMn3, the most widely used industri...
We perform an ab initio study of the ordered phases of IrMn and IrMn3, the most widely used industri...
Iridium manganese (IrMn) is arguably the most important antiferromagnetic material for device applic...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
We have determined the magnetic structures of single-crystal thin-films of IrMn3 for the crystallogr...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
We have determined the magnetic structures of single-crystal thin-films of IrMn3 for the crystallogr...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (tAFM = 3, 6, 10...
Until the late 1980's, anti-ferromagnets were thought of as theoretically interesting but with no pr...
There has been considerable interest in spin-orbit torques for the purpose of manipulating the magne...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) h...
The finite size and temperature dependent properties of antiferromagnets are of critical importance ...
The magnetic anisotropy of antiferromagnets plays a crucial role in stabilizing the magnetization of...
We perform an ab initio study of the ordered phases of IrMn and IrMn3, the most widely used industri...
We perform an ab initio study of the ordered phases of IrMn and IrMn3, the most widely used industri...
Iridium manganese (IrMn) is arguably the most important antiferromagnetic material for device applic...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
We have determined the magnetic structures of single-crystal thin-films of IrMn3 for the crystallogr...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
We have determined the magnetic structures of single-crystal thin-films of IrMn3 for the crystallogr...
Antiferromagnetic spintronics is an emerging field; antiferromagnets can improve the functionalities...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (tAFM = 3, 6, 10...
Until the late 1980's, anti-ferromagnets were thought of as theoretically interesting but with no pr...
There has been considerable interest in spin-orbit torques for the purpose of manipulating the magne...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) h...
The finite size and temperature dependent properties of antiferromagnets are of critical importance ...