Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets

Indium-substituted yttrium iron garnet samples, Y3Fe5 xInxO12 (x ¼ 0e0.7, step 0.1), were prepared using a citrate solgel method. Synchrotron X-ray diffraction (SXRD) measurements combined with the Rietveld refinement technique were used to investigate the crystallization, structure parameters and...

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Main Authors: Huong, Vu Thi Hoai, Nguyet, Dao Thi Thuy, Duong, Nguyen Phuc, Loan, To Thanh, Soontaranon, Siriwat, Anh, Le Duc
Format: Article
Language:English
Published: H. : ĐHQGHN 2020
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Online Access:http://repository.vnu.edu.vn/handle/VNU_123/76750
https://doi.org/10.1016/j.jsamd.2020.02.007
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Institution: Vietnam National University, Hanoi
Language: English
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spelling oai:112.137.131.14:VNU_123-767502020-04-06T09:43:41Z Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets Huong, Vu Thi Hoai Nguyet, Dao Thi Thuy Duong, Nguyen Phuc Loan, To Thanh Soontaranon, Siriwat Anh, Le Duc In-substituted yttrium iron garnets Magnetization Curie temperature Molecular field coefficients Spin-wave stiffness constant Indium-substituted yttrium iron garnet samples, Y3Fe5 xInxO12 (x ¼ 0e0.7, step 0.1), were prepared using a citrate solgel method. Synchrotron X-ray diffraction (SXRD) measurements combined with the Rietveld refinement technique were used to investigate the crystallization, structure parameters and lattice distortion in the samples. Magnetization and Curie temperature of the samples were measured with the SQUID and VSM equipments. The non-magnetic indium ions were found to reside at the octahedral sites, leading to an increase of the total magnetization and a decrease in the Curie temperature. Molecular field coefficients Naa, Ndd and Nad were determined by fitting the experimental thermomagnetization curves in the framework of a two-sublattice ferrimagnetic model. The stiffness constant of the spin waves, D, in these samples was calculated based on the exchange interaction constants, Jij, and its temperature dependence was derived for the sublattice magetizations. The calculated results for D(T) are in good agreement with the experimentally measured data and are significantly large around room temperature. 2020-04-06T09:43:41Z 2020-04-06T09:43:41Z 2020 Article Huong, V. T. H., et al. (2020). Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets. Journal of Science: Advanced Materials and Devices (Febuary 2020). 2468-2179 http://repository.vnu.edu.vn/handle/VNU_123/76750 https://doi.org/10.1016/j.jsamd.2020.02.007 en Journal of Science: Advanced Materials and Devices; application/pdf H. : ĐHQGHN
institution Vietnam National University, Hanoi
building VNU Library & Information Center
country Vietnam
collection VNU Digital Repository
language English
topic In-substituted yttrium iron garnets
Magnetization
Curie temperature
Molecular field coefficients
Spin-wave stiffness constant
spellingShingle In-substituted yttrium iron garnets
Magnetization
Curie temperature
Molecular field coefficients
Spin-wave stiffness constant
Huong, Vu Thi Hoai
Nguyet, Dao Thi Thuy
Duong, Nguyen Phuc
Loan, To Thanh
Soontaranon, Siriwat
Anh, Le Duc
Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
description Indium-substituted yttrium iron garnet samples, Y3Fe5 xInxO12 (x ¼ 0e0.7, step 0.1), were prepared using a citrate solgel method. Synchrotron X-ray diffraction (SXRD) measurements combined with the Rietveld refinement technique were used to investigate the crystallization, structure parameters and lattice distortion in the samples. Magnetization and Curie temperature of the samples were measured with the SQUID and VSM equipments. The non-magnetic indium ions were found to reside at the octahedral sites, leading to an increase of the total magnetization and a decrease in the Curie temperature. Molecular field coefficients Naa, Ndd and Nad were determined by fitting the experimental thermomagnetization curves in the framework of a two-sublattice ferrimagnetic model. The stiffness constant of the spin waves, D, in these samples was calculated based on the exchange interaction constants, Jij, and its temperature dependence was derived for the sublattice magetizations. The calculated results for D(T) are in good agreement with the experimentally measured data and are significantly large around room temperature.
format Article
author Huong, Vu Thi Hoai
Nguyet, Dao Thi Thuy
Duong, Nguyen Phuc
Loan, To Thanh
Soontaranon, Siriwat
Anh, Le Duc
author_facet Huong, Vu Thi Hoai
Nguyet, Dao Thi Thuy
Duong, Nguyen Phuc
Loan, To Thanh
Soontaranon, Siriwat
Anh, Le Duc
author_sort Huong, Vu Thi Hoai
title Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
title_short Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
title_full Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
title_fullStr Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
title_full_unstemmed Magnetic interactions and spin-wave stiffness constant of In-substituted yttrium iron garnets
title_sort magnetic interactions and spin-wave stiffness constant of in-substituted yttrium iron garnets
publisher H. : ĐHQGHN
publishDate 2020
url http://repository.vnu.edu.vn/handle/VNU_123/76750
https://doi.org/10.1016/j.jsamd.2020.02.007
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