Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures

The spectral and field dependences of the Transversal Kerr Effect (TKE) for (Co40Fe40B20)Z(SiO2)100-Z/Si (or С) multilayer (ML) nanocomposite-semiconductor structures were studied depending on the concentration of the nanocomposite layer ferromagnetic phase (Z), chemical of semiconductor layer and i...

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Main Authors: Buravtsova Victoria, Gan’shina Elena, Kalinin Yuri, Sitnikov Alexander
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201818503013
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spelling doaj-844aa42c3aa34037b10d38538353b25d2021-08-02T18:50:24ZengEDP SciencesEPJ Web of Conferences2100-014X2018-01-011850301310.1051/epjconf/201818503013epjconf_mism2017_03013Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor StructuresBuravtsova VictoriaGan’shina ElenaKalinin YuriSitnikov AlexanderThe spectral and field dependences of the Transversal Kerr Effect (TKE) for (Co40Fe40B20)Z(SiO2)100-Z/Si (or С) multilayer (ML) nanocomposite-semiconductor structures were studied depending on the concentration of the nanocomposite layer ferromagnetic phase (Z), chemical of semiconductor layer and its thickness. It was found that under certain conditions an addition of thin nonmagnetic semiconductor layer leads to the increase of a multilayer magneto-optical (MO) response and softening of the magnetic properties of ML structure, up to the appearance of ferromagnetic (FM) ordering. The observed anomalous changes in magnetic and MO properties are well correlated with abrupt changes in the electric properties of ML structures. Decreasing of ferromagnetic phase concentration Z in the nanocomposite layer as well as increasing of the semiconductor layer thickness led to the disappearance of anomalous behavior in the MO properties. The results obtained are discussed taking into account the formation of a new magnetic phase on the FM granule-semiconductor interface.https://doi.org/10.1051/epjconf/201818503013
collection DOAJ
language English
format Article
sources DOAJ
author Buravtsova Victoria
Gan’shina Elena
Kalinin Yuri
Sitnikov Alexander
spellingShingle Buravtsova Victoria
Gan’shina Elena
Kalinin Yuri
Sitnikov Alexander
Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
EPJ Web of Conferences
author_facet Buravtsova Victoria
Gan’shina Elena
Kalinin Yuri
Sitnikov Alexander
author_sort Buravtsova Victoria
title Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
title_short Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
title_full Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
title_fullStr Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
title_full_unstemmed Magneto-Optical Response Amplification In Multi-Layer Nanocomposite-Semiconductor Structures
title_sort magneto-optical response amplification in multi-layer nanocomposite-semiconductor structures
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2018-01-01
description The spectral and field dependences of the Transversal Kerr Effect (TKE) for (Co40Fe40B20)Z(SiO2)100-Z/Si (or С) multilayer (ML) nanocomposite-semiconductor structures were studied depending on the concentration of the nanocomposite layer ferromagnetic phase (Z), chemical of semiconductor layer and its thickness. It was found that under certain conditions an addition of thin nonmagnetic semiconductor layer leads to the increase of a multilayer magneto-optical (MO) response and softening of the magnetic properties of ML structure, up to the appearance of ferromagnetic (FM) ordering. The observed anomalous changes in magnetic and MO properties are well correlated with abrupt changes in the electric properties of ML structures. Decreasing of ferromagnetic phase concentration Z in the nanocomposite layer as well as increasing of the semiconductor layer thickness led to the disappearance of anomalous behavior in the MO properties. The results obtained are discussed taking into account the formation of a new magnetic phase on the FM granule-semiconductor interface.
url https://doi.org/10.1051/epjconf/201818503013
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AT ganshinaelena magnetoopticalresponseamplificationinmultilayernanocompositesemiconductorstructures
AT kalininyuri magnetoopticalresponseamplificationinmultilayernanocompositesemiconductorstructures
AT sitnikovalexander magnetoopticalresponseamplificationinmultilayernanocompositesemiconductorstructures
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