Zobrazeno 1 - 10
of 13
pro vyhledávání: '"R S Zavornitsyn"'
Autor:
L. I. Naumova, R. S. Zavornitsyn, M. A. Milyaev, M. V. Makarova, V. V. Proglyado, A. S. Rusalina, V. V. Ustinov
Publikováno v:
Physics of Metals and Metallography. 123:945-953
Autor:
V. V. Ustinov, M. A. Milyaev, L. I. Naumova, R. S. Zavornitsyn, T. P. Krinitsina, V. V. Proglyado
Publikováno v:
Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 15:1278-1281
Autor:
L. I. Naumova, T. A. Chernyshova, R. S. Zavornitsyn, M. A. Milyaev, I. K. Maksimova, V. V. Proglyado, A. A. Zakharov, V. V. Ustinov
Publikováno v:
Physics of Metals and Metallography. 122:1066-1074
Abstract Exchange-coupled spin valves based on ferromagnetic alloys CoFeNi and antiferromagnetic alloy FeMn are obtained on flexible polyimide substrates by magnetron sputtering. The magnetoresistive properties of films and microstrips of spin valves
Autor:
R. S. Zavornitsyn, V. V. Ustinov, M. A. Milyaev, M. V. Makarova, V. V. Proglyado, L. I. Naumova
Publikováno v:
Physics of Metals and Metallography. 122:540-546
The dependence of the Neel temperature on the thickness of the dysprosium layer has been studied. It is shown that the temperature range within which the paramagnetic–antiferromagnetic phase transition takes place depends on the microstructure and
Autor:
L I Naumova, R S Zavornitsyn, M A Milyaev, N G Bebenin, A Y Pavlova, M V Makarova, I K Maksimova, V V Proglyado, A A Zakharov, V V Ustinov
Publikováno v:
Chinese Physics B. 32:057502
Flexible spin valves were prepared by magnetron sputtering on polyimide substrates. The buffer layer that reduces significantly the effect of the polymer substrate on the spin valve microstructure and magnetoresistive properties was revealed. Bending
Autor:
I. K. Maksimova, M. A. Milyaev, V. V. Ustinov, M. V. Makarova, R. S. Zavornitsyn, V. V. Proglyado, L. I. Naumova
Publikováno v:
Current Applied Physics. 20:1328-1334
Spin valves with holmium layers and three-layer structures metal/Ho/metal were prepared by magnetron sputtering. A holmium layer in the spin valves is polycrystalline with weak axial texture. The structural coherence length along the hexagonal c-axis
Autor:
V. V. Ustinov, A. Yu. Pavlova, R. S. Zavornitsyn, M. A. Milyaev, V. V. Proglyado, L. I. Naumova, I. K. Maksimova
Publikováno v:
Physics of Metals and Metallography. 121:721-728
A method of universal thermomagnetic treatment forming a pairwise opposite exchange bias in spin valves, which are sensor elements of a Wheatstone bridge, has been developed. The method is based on the formation of two magnetic phases in a spin valve
Autor:
M. A. Milyaev, V. V. Proglyado, M. V. Makarova, L. I. Naumova, T. P. Krinitsina, V. V. Ustinov, R. S. Zavornitsyn
Publikováno v:
Physics of Metals and Metallography. 121:624-630
Spin valves comprising a synthetic antiferromagnet and a CoFe/Dy/CoFe structure in the pinned layer were prepared by magnetron sputtering. It is shown that the Dy layer is characterized by crystallites, the [0002] direction of which is perpendicular
Autor:
L. I. Naumova, T. P. Krinitsina, V. V. Ustinov, M. A. Milyaev, V. V. Proglyado, R. S. Zavornitsyn
Publikováno v:
Current Applied Physics. 19:1252-1258
Spin valves with nanostructure CoFe/Dy/CoFe and three-layer structures metal/Dy/metal were prepared by magnetron sputtering. The measurements of field dependences of magnetoresistance and magnetization were held at different temperatures. The changes
Autor:
L. I. Naumova, V. V. Proglyado, T. A. Chernyshova, R. S. Zavornitsyn, M. A. Milyaev, V. V. Ustinov, T. P. Krinitsina
Publikováno v:
Physics of Metals and Metallography. 120:429-435
Pseudo spin valve nanostructures, which comprise a dysprosium layer and exhibit giant magnetoresistance, are prepared by magnetron sputtering. The field dependences of magnetoresistance of the as-prepared nanostructures and nanostructures subjected t