Recent studies have demonstrated the potential of antiferromagnets as the active component in spintronic devices. This is in contrast to their current passive role as pinning layers in hard disk read heads and magnetic memories. Here we report the epitaxial growth of a new high- temperature antiferromagnetic material, tetragonal CuMnAs, which exhibits excellent crystal quality, chemical order and compatibility with existing semiconductor technologies. We demonstrate its growth on the III–V semiconductors GaAs and GaP, and show that the structure is also lattice matched to Si. Neutron diffraction shows collinear antiferromagnetic order with a high Ne ́el temperature. Combined with our demonstration of room-temperature- exchange coupling in a...
We performed scanning tunneling microscopy and spectroscopy on a LiMnAs(001) thin film epitaxially g...
Synthesis of single-crystalline NaMnAs is reported, and we confirm its high quality by x-ray photoem...
The antiferromagnetic (AFM) CuMnAs alloy with tetragonal structure is a promising material for the A...
Recent studies have demonstrated the potential of antiferromagnets as the active component in spintr...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
In antiferromagnetic (AF) materials, magnetic moments align in a regular pattern such that the mome...
Antiferromagnetic materials as active components in spintronic devices promise insensitivity against...
Tetragonal CuMnAs is a room temperature antiferromagnet with an electrically reorientable Néel vecto...
Using x-ray magnetic circular and linear dichroism techniques, we demonstrate a collinear exchange c...
Research into antiferromagnetic materials for application in spintronics has rapidly expanded in rec...
Antiferromagnetic semiconductors are new alternative materials for spintronic applications and spin ...
Študovali sme tetragonálnu fázu CuMnAs ktorý je kľúčový materiál pre antiforromagnetickú spintroniku...
We report the synthesis and properties of a new layered tetragonal ternary compound CsMn4As3 (struct...
We performed scanning tunneling microscopy and spectroscopy on a LiMnAs(001) thin film epitaxially g...
Synthesis of single-crystalline NaMnAs is reported, and we confirm its high quality by x-ray photoem...
The antiferromagnetic (AFM) CuMnAs alloy with tetragonal structure is a promising material for the A...
Recent studies have demonstrated the potential of antiferromagnets as the active component in spintr...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
In antiferromagnetic (AF) materials, magnetic moments align in a regular pattern such that the mome...
Antiferromagnetic materials as active components in spintronic devices promise insensitivity against...
Tetragonal CuMnAs is a room temperature antiferromagnet with an electrically reorientable Néel vecto...
Using x-ray magnetic circular and linear dichroism techniques, we demonstrate a collinear exchange c...
Research into antiferromagnetic materials for application in spintronics has rapidly expanded in rec...
Antiferromagnetic semiconductors are new alternative materials for spintronic applications and spin ...
Študovali sme tetragonálnu fázu CuMnAs ktorý je kľúčový materiál pre antiforromagnetickú spintroniku...
We report the synthesis and properties of a new layered tetragonal ternary compound CsMn4As3 (struct...
We performed scanning tunneling microscopy and spectroscopy on a LiMnAs(001) thin film epitaxially g...
Synthesis of single-crystalline NaMnAs is reported, and we confirm its high quality by x-ray photoem...
The antiferromagnetic (AFM) CuMnAs alloy with tetragonal structure is a promising material for the A...