Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields

In the present work, we consider magneto-conductivity behavior within a two-dimensional p-Si/SiGe/Si system. A theoretical model of magneto-conductivity with three important contributions is derived, namely, an account for the weak localization process, for electron-electron interaction effects, and...

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Main Authors: Mabchour Hamza, Kacimi Houda, Fennane Sara, ALtalqi Fatehi, Echchelh Adil
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2025/11/epjconf_cofmer2025_03002.pdf
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author Mabchour Hamza
Kacimi Houda
Fennane Sara
ALtalqi Fatehi
Echchelh Adil
author_facet Mabchour Hamza
Kacimi Houda
Fennane Sara
ALtalqi Fatehi
Echchelh Adil
author_sort Mabchour Hamza
collection DOAJ
description In the present work, we consider magneto-conductivity behavior within a two-dimensional p-Si/SiGe/Si system. A theoretical model of magneto-conductivity with three important contributions is derived, namely, an account for the weak localization process, for electron-electron interaction effects, and for the Zeeman effect, which is taken into account only if a magnetic field is present. Further, theoretical values predicted by our model are compared with experimental magneto-conductivity values for a comparison of similarity and difference with experimental values. In our research, experimental data for p-Si/SiGe/Si were used, which has been previously collected by I. L. Drichko et al. [1] for supporting purposes.
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issn 2100-014X
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publishDate 2025-01-01
publisher EDP Sciences
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series EPJ Web of Conferences
spelling doaj-art-387ebe53db1b4d7f8bcd26ef11912dc72025-08-20T03:08:47ZengEDP SciencesEPJ Web of Conferences2100-014X2025-01-013260300210.1051/epjconf/202532603002epjconf_cofmer2025_03002Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fieldsMabchour Hamza0Kacimi Houda1Fennane Sara2ALtalqi Fatehi3Echchelh Adil4Laboratory of Energetic Engineering and Materials, Faculty of Sciences Ibn TofailLaboratory of Energetic Engineering and Materials, Faculty of Sciences Ibn TofailLaboratory of Energetic Engineering and Materials, Faculty of Sciences Ibn TofailLaboratory of Energetic Engineering and Materials, Faculty of Sciences Ibn TofailLaboratory of Energetic Engineering and Materials, Faculty of Sciences Ibn TofailIn the present work, we consider magneto-conductivity behavior within a two-dimensional p-Si/SiGe/Si system. A theoretical model of magneto-conductivity with three important contributions is derived, namely, an account for the weak localization process, for electron-electron interaction effects, and for the Zeeman effect, which is taken into account only if a magnetic field is present. Further, theoretical values predicted by our model are compared with experimental magneto-conductivity values for a comparison of similarity and difference with experimental values. In our research, experimental data for p-Si/SiGe/Si were used, which has been previously collected by I. L. Drichko et al. [1] for supporting purposes.https://www.epj-conferences.org/articles/epjconf/pdf/2025/11/epjconf_cofmer2025_03002.pdf
spellingShingle Mabchour Hamza
Kacimi Houda
Fennane Sara
ALtalqi Fatehi
Echchelh Adil
Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
EPJ Web of Conferences
title Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
title_full Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
title_fullStr Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
title_full_unstemmed Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
title_short Theoretical modeling of magneto-Conductivity (MC) in dilute p-Si/SiGe/Si under magnetic fields
title_sort theoretical modeling of magneto conductivity mc in dilute p si sige si under magnetic fields
url https://www.epj-conferences.org/articles/epjconf/pdf/2025/11/epjconf_cofmer2025_03002.pdf
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AT kacimihouda theoreticalmodelingofmagnetoconductivitymcindilutepsisigesiundermagneticfields
AT fennanesara theoreticalmodelingofmagnetoconductivitymcindilutepsisigesiundermagneticfields
AT altalqifatehi theoreticalmodelingofmagnetoconductivitymcindilutepsisigesiundermagneticfields
AT echchelhadil theoreticalmodelingofmagnetoconductivitymcindilutepsisigesiundermagneticfields