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Magnetoresistive Effect in Vertical Fe3Si/Ge/Mn5Ge3/Si(111) Hybrid Structures

We described the synthesis method and presents the results of a study of the magnetic and magnetotransport properties of vertical hybrid structures Fe 3 Si/Ge/Mn 5 Ge 3 /Si. The mechanisms responsible for the detected magnetoresistive effect and the possible contribution of the spin-valve effect, re...

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Published in:Bulletin of the Russian Academy of Sciences. Physics 2024, Vol.88 (Suppl 1), p.S42-S46
Main Authors: Lukyanenko, A. V., Shanidze, L. V., Rautskii, M. V., Yakovlev, I. A., Sukhachev, A. L., Maksimova, K. Yu, Goikhman, A. Yu, Volkov, N. V., Tarasov, A. S.
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container_issue Suppl 1
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container_title Bulletin of the Russian Academy of Sciences. Physics
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creator Lukyanenko, A. V.
Shanidze, L. V.
Rautskii, M. V.
Yakovlev, I. A.
Sukhachev, A. L.
Maksimova, K. Yu
Goikhman, A. Yu
Volkov, N. V.
Tarasov, A. S.
description We described the synthesis method and presents the results of a study of the magnetic and magnetotransport properties of vertical hybrid structures Fe 3 Si/Ge/Mn 5 Ge 3 /Si. The mechanisms responsible for the detected magnetoresistive effect and the possible contribution of the spin-valve effect, realized through spin injection/extraction into/from germanium, are discussed.
doi_str_mv 10.1134/S1062873824708766
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subjects Germanides
Germanium
Hadrons
Heavy Ions
Hybrid structures
Iron silicide
Magnetic properties
Magnetoresistivity
Manganese compounds
Nuclear Physics
Physics
Physics and Astronomy
Silicon
Spin valves
Transport properties
title Magnetoresistive Effect in Vertical Fe3Si/Ge/Mn5Ge3/Si(111) Hybrid Structures
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