Motivated by a recent experiment evidencing triplet superconductivity in a ferromagnetic Josephson junction with a Cu2MnAl-Heusler barrier, we construct a theoretical model accounting for this observation. The key ingredients in our model which generate the triplet supercurrent are spin-active zones, characterized by an effective canted interface magnetic moment. Using a numerical solution of the quasiclassical equations of superconductivity with spin-active boundary conditions, we find qualitatively very good agreement with the experimentally observed supercurrent. Further experimental implications of the spin-active zones are discussed
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
In this work we extend our earlier analysis of the novel Josephson effect in triplet superconductorf...
In this work we extend our earlier analysis of the novel Josephson effect in triplet superconductorf...
We present a numerical study of ferromagnetic Josephson junctions with one intermediate layer and sp...
Magnetic inhomogeneity at a superconductor (S) – ferromagnet (F) interface converts spin-singlet Coo...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
It has been suggested by theoretical works that equal-spin triplet pair correlations can be generate...
We present a theoretical study of the Josephson coupling of two superconductors that are connected t...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
The study of superconductor-ferromagnet interfaces has generated great interest in the last decades,...
In this work we extend our earlier analysis of the novel Josephson effect in triplet superconductorf...
In this work we extend our earlier analysis of the novel Josephson effect in triplet superconductorf...
We present a numerical study of ferromagnetic Josephson junctions with one intermediate layer and sp...
Magnetic inhomogeneity at a superconductor (S) – ferromagnet (F) interface converts spin-singlet Coo...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
It has been suggested by theoretical works that equal-spin triplet pair correlations can be generate...
We present a theoretical study of the Josephson coupling of two superconductors that are connected t...
The induced magnetic moment, provided by the bands electrons, is calculated in a variety of Josephso...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...
Triplet supercurrents in multilayer ferromagnetic Josephson junctions with misaligned magnetization ...