The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit for thin F/S and F/S/F nanostructures, where F is a ferromagnet and S is a superconductor. The dependences of the critical temperature on the exchange field I, electron correlations λf, and the thickness df of the F layer are derived for F/S bilayers and F/S/F trilayers. In addition, two new π-phase superconducting states with electron-electron repulsion in the F layers of F/S/F trilayers are predicted. A two-dimensional LOFF state in F/S/F trilayers is possible only in the presence of a weak magnetic field and the appropriate parameters of the F and S layers. The absence of the suppression of three-dimensional superconductivity in short-per...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
© (2009) Trans Tech Publications, Switzerland. We investigate the interplay between the BCS and 2D L...
© (2009) Trans Tech Publications, Switzerland. We investigate the interplay between the BCS and 2D L...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
The proximity effect and competition between the BCS and LOFF states are studied in the Cooper limit...
© (2009) Trans Tech Publications, Switzerland. We investigate the interplay between the BCS and 2D L...
© (2009) Trans Tech Publications, Switzerland. We investigate the interplay between the BCS and 2D L...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
We investigate the interplay between the BCS and 2D Larkin-Ovchinnikov- Fulde-Ferrell (LOFF) states ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...
The proximity effect for thin bilayer F/S and trilayer F/S/F, where F is a ferromagnetic metal, and ...