Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve

In the present work we have studied the proximity-induced superconducting triplet pairing in CoOx/Py1/Cu/Py2/Cu/Pb spin-valve structure (where Py = Ni0:81Fe0:19). For CoOx(3 nm)/Py(3 nm)/Cu(4 nm)/Py(0.6 nm)/Cu(2 nm)/Pb(70 nm) we have studied the dependence of the Tc on the angle α between the direct...

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Main Authors: Kamashev Andrey, Validov Aidar, Garif’yanov Nadir, Fominov Yakov, Leksin Pavel, Schumann Joachim, Thomas Jürgen, Kataev Vladislav, Büchner Bernd, Garifullin Ilgiz
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201818508001
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spelling doaj-ef370296e34747048c22f64f3ad6545b2021-08-02T04:26:08ZengEDP SciencesEPJ Web of Conferences2100-014X2018-01-011850800110.1051/epjconf/201818508001epjconf_mism2017_08001Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valveKamashev AndreyValidov AidarGarif’yanov NadirFominov YakovLeksin PavelSchumann JoachimThomas JürgenKataev VladislavBüchner BerndGarifullin IlgizIn the present work we have studied the proximity-induced superconducting triplet pairing in CoOx/Py1/Cu/Py2/Cu/Pb spin-valve structure (where Py = Ni0:81Fe0:19). For CoOx(3 nm)/Py(3 nm)/Cu(4 nm)/Py(0.6 nm)/Cu(2 nm)/Pb(70 nm) we have studied the dependence of the Tc on the angle α between the direction of the cooling field and the external field both applied in the plane of the sample. We obtained that the Tc does not change monotonically with the angle but passes through a minimum. To observe an “isolated” triplet spin-valve effect we exploited the oscillatory feature of the magnitude of the ordinary spin-valve effect ΔTc in the dependence of the Py2-layer thickness dPy2. We determined the value of dPy2 at which ΔTc caused by the ordinary spin-valve effect is suppressed. This means that the difference in the Tc between the antiparallel and parallel mutual orientation of magnetizations of the Py1 and Py2 layers is zero. For such a sample a “pure” triplet spin-valve effect which causes the minimum in Tc at the orthogonal configuration of magnetizations has been observed.https://doi.org/10.1051/epjconf/201818508001
collection DOAJ
language English
format Article
sources DOAJ
author Kamashev Andrey
Validov Aidar
Garif’yanov Nadir
Fominov Yakov
Leksin Pavel
Schumann Joachim
Thomas Jürgen
Kataev Vladislav
Büchner Bernd
Garifullin Ilgiz
spellingShingle Kamashev Andrey
Validov Aidar
Garif’yanov Nadir
Fominov Yakov
Leksin Pavel
Schumann Joachim
Thomas Jürgen
Kataev Vladislav
Büchner Bernd
Garifullin Ilgiz
Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
EPJ Web of Conferences
author_facet Kamashev Andrey
Validov Aidar
Garif’yanov Nadir
Fominov Yakov
Leksin Pavel
Schumann Joachim
Thomas Jürgen
Kataev Vladislav
Büchner Bernd
Garifullin Ilgiz
author_sort Kamashev Andrey
title Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
title_short Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
title_full Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
title_fullStr Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
title_full_unstemmed Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
title_sort isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2018-01-01
description In the present work we have studied the proximity-induced superconducting triplet pairing in CoOx/Py1/Cu/Py2/Cu/Pb spin-valve structure (where Py = Ni0:81Fe0:19). For CoOx(3 nm)/Py(3 nm)/Cu(4 nm)/Py(0.6 nm)/Cu(2 nm)/Pb(70 nm) we have studied the dependence of the Tc on the angle α between the direction of the cooling field and the external field both applied in the plane of the sample. We obtained that the Tc does not change monotonically with the angle but passes through a minimum. To observe an “isolated” triplet spin-valve effect we exploited the oscillatory feature of the magnitude of the ordinary spin-valve effect ΔTc in the dependence of the Py2-layer thickness dPy2. We determined the value of dPy2 at which ΔTc caused by the ordinary spin-valve effect is suppressed. This means that the difference in the Tc between the antiparallel and parallel mutual orientation of magnetizations of the Py1 and Py2 layers is zero. For such a sample a “pure” triplet spin-valve effect which causes the minimum in Tc at the orthogonal configuration of magnetizations has been observed.
url https://doi.org/10.1051/epjconf/201818508001
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