Cargando…
The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys
Experimental studies into the forced magnetostriction, magnetization, and temperature dependence of permeability in Ni(2)MnIn and Ni(2)MnSn ferromagnetic Heusler alloys were performed according to the spin fluctuation theory of itinerant ferromagnetism proposed by Takahashi. We investigated the magn...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254384/ https://www.ncbi.nlm.nih.gov/pubmed/32344877 http://dx.doi.org/10.3390/ma13092017 |
_version_ | 1783539532757467136 |
---|---|
author | Sakon, Takuo Yamazaki, Junya Komori, Takumi Kanomata, Takeshi Narumi, Yasuo Hagiwara, Masayuki Nojiri, Hiroyuki Adachi, Yoshiya |
author_facet | Sakon, Takuo Yamazaki, Junya Komori, Takumi Kanomata, Takeshi Narumi, Yasuo Hagiwara, Masayuki Nojiri, Hiroyuki Adachi, Yoshiya |
author_sort | Sakon, Takuo |
collection | PubMed |
description | Experimental studies into the forced magnetostriction, magnetization, and temperature dependence of permeability in Ni(2)MnIn and Ni(2)MnSn ferromagnetic Heusler alloys were performed according to the spin fluctuation theory of itinerant ferromagnetism proposed by Takahashi. We investigated the magnetic field (H) dependence of magnetization (M) at the Curie temperature T(C), and at T = 4.2 K, which concerns the ground state of the ferromagnetic state. The M-H result at T(C) was analyzed by means of the H versus M(5) dependence. At 4.2 K, it was investigated by means of an Arrott plot (H/M vs. M(2)) according to Takahashi’s theory. As for Ni(2)MnIn and Ni(2)MnSn, the spin fluctuation parameters in k-space (momentum space, T(A)) and that in energy space (frequency space, T(0)) obtained at T(C) and 4.2 K were almost the same. The average values obtained at T(C) and 4.2 K were T(A) = 342 K, T(0) = 276 K for Ni(2)MnIn and T(A) = 447 K, T(0) = 279 K for Ni(2)MnSn, respectively. The forced magnetostriction at T(C) was also investigated. The forced linear magnetostriction (ΔL/L) and the forced volume magnetostriction (ΔV/V) were proportional to M(4), which followed Takahashi’s theory. We compared the forced volume magnetostriction ΔV/V and mechanical parameter, bulk modulus K. ΔV/V is inversely proportional to K. We also discuss the spin polarization of Ni(2)MnIn and other magnetic Heusler alloys. The p(C)/p(S) of Ni(2)MnIn was 0.860. This is comparable with that of Co(2)MnGa, which is a famous half-metallic alloy. |
format | Online Article Text |
id | pubmed-7254384 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-72543842020-06-10 The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys Sakon, Takuo Yamazaki, Junya Komori, Takumi Kanomata, Takeshi Narumi, Yasuo Hagiwara, Masayuki Nojiri, Hiroyuki Adachi, Yoshiya Materials (Basel) Article Experimental studies into the forced magnetostriction, magnetization, and temperature dependence of permeability in Ni(2)MnIn and Ni(2)MnSn ferromagnetic Heusler alloys were performed according to the spin fluctuation theory of itinerant ferromagnetism proposed by Takahashi. We investigated the magnetic field (H) dependence of magnetization (M) at the Curie temperature T(C), and at T = 4.2 K, which concerns the ground state of the ferromagnetic state. The M-H result at T(C) was analyzed by means of the H versus M(5) dependence. At 4.2 K, it was investigated by means of an Arrott plot (H/M vs. M(2)) according to Takahashi’s theory. As for Ni(2)MnIn and Ni(2)MnSn, the spin fluctuation parameters in k-space (momentum space, T(A)) and that in energy space (frequency space, T(0)) obtained at T(C) and 4.2 K were almost the same. The average values obtained at T(C) and 4.2 K were T(A) = 342 K, T(0) = 276 K for Ni(2)MnIn and T(A) = 447 K, T(0) = 279 K for Ni(2)MnSn, respectively. The forced magnetostriction at T(C) was also investigated. The forced linear magnetostriction (ΔL/L) and the forced volume magnetostriction (ΔV/V) were proportional to M(4), which followed Takahashi’s theory. We compared the forced volume magnetostriction ΔV/V and mechanical parameter, bulk modulus K. ΔV/V is inversely proportional to K. We also discuss the spin polarization of Ni(2)MnIn and other magnetic Heusler alloys. The p(C)/p(S) of Ni(2)MnIn was 0.860. This is comparable with that of Co(2)MnGa, which is a famous half-metallic alloy. MDPI 2020-04-25 /pmc/articles/PMC7254384/ /pubmed/32344877 http://dx.doi.org/10.3390/ma13092017 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Sakon, Takuo Yamazaki, Junya Komori, Takumi Kanomata, Takeshi Narumi, Yasuo Hagiwara, Masayuki Nojiri, Hiroyuki Adachi, Yoshiya The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title | The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title_full | The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title_fullStr | The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title_full_unstemmed | The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title_short | The Forced Magnetostrictions and Magnetic Properties of Ni(2)MnX (X = In, Sn) Ferromagnetic Heusler Alloys |
title_sort | forced magnetostrictions and magnetic properties of ni(2)mnx (x = in, sn) ferromagnetic heusler alloys |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254384/ https://www.ncbi.nlm.nih.gov/pubmed/32344877 http://dx.doi.org/10.3390/ma13092017 |
work_keys_str_mv | AT sakontakuo theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT yamazakijunya theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT komoritakumi theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT kanomatatakeshi theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT narumiyasuo theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT hagiwaramasayuki theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT nojirihiroyuki theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT adachiyoshiya theforcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT sakontakuo forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT yamazakijunya forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT komoritakumi forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT kanomatatakeshi forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT narumiyasuo forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT hagiwaramasayuki forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT nojirihiroyuki forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys AT adachiyoshiya forcedmagnetostrictionsandmagneticpropertiesofni2mnxxinsnferromagneticheusleralloys |