The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite

In this paper, the resistivity of bilayer manganite LaSr2Mn2O7 around the metal–insulator-like transition was systematically calculated as a function of temperature and applied magnetic field. A typical mathematical function (Gauss function) was used for fitting the experimental data. The theoretica...

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Main Authors: Mohammad Hossein Ehsani, Mahmoud Jalali Mehrabad
Format: Article
Language:English
Published: Elsevier 2018-10-01
Series:Journal of King Saud University: Engineering Sciences
Online Access:http://www.sciencedirect.com/science/article/pii/S1018363916300058
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author Mohammad Hossein Ehsani
Mahmoud Jalali Mehrabad
author_facet Mohammad Hossein Ehsani
Mahmoud Jalali Mehrabad
author_sort Mohammad Hossein Ehsani
collection DOAJ
description In this paper, the resistivity of bilayer manganite LaSr2Mn2O7 around the metal–insulator-like transition was systematically calculated as a function of temperature and applied magnetic field. A typical mathematical function (Gauss function) was used for fitting the experimental data. The theoretical values simulated in this work such as – metal–insulator transition temperature (Tp) and maximum resistivity (ρmax) showed promising agreement with the experimental data. Keywords: Bilayered manganite, Magneto-resistance, Resistivity, Fitting
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spelling doaj.art-11c7620d4e1f4bf8bc2849a2f1f9ad572022-12-22T01:12:12ZengElsevierJournal of King Saud University: Engineering Sciences1018-36392018-10-01304339344The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganiteMohammad Hossein Ehsani0Mahmoud Jalali Mehrabad1Corresponding author. Tel./fax: +98 9123314981.; Department of Physics, Semnan University, Semnan 35195-363, IranDepartment of Physics, Semnan University, Semnan 35195-363, IranIn this paper, the resistivity of bilayer manganite LaSr2Mn2O7 around the metal–insulator-like transition was systematically calculated as a function of temperature and applied magnetic field. A typical mathematical function (Gauss function) was used for fitting the experimental data. The theoretical values simulated in this work such as – metal–insulator transition temperature (Tp) and maximum resistivity (ρmax) showed promising agreement with the experimental data. Keywords: Bilayered manganite, Magneto-resistance, Resistivity, Fittinghttp://www.sciencedirect.com/science/article/pii/S1018363916300058
spellingShingle Mohammad Hossein Ehsani
Mahmoud Jalali Mehrabad
The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
Journal of King Saud University: Engineering Sciences
title The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
title_full The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
title_fullStr The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
title_full_unstemmed The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
title_short The electrical transition temperature and magnetoresistance prediction of LaSr2Mn2O7 bilayered manganite
title_sort electrical transition temperature and magnetoresistance prediction of lasr2mn2o7 bilayered manganite
url http://www.sciencedirect.com/science/article/pii/S1018363916300058
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