論文 First-Principles Studies on Spin-Dependent Transport of Magnetic Junctions with Half-Metallic Heusler Compounds

Y. Miura SAMURAI ORCID (National Institute for Materials Science)

コレクション

引用
Y. Miura. First-Principles Studies on Spin-Dependent Transport of Magnetic Junctions with Half-Metallic Heusler Compounds. Journal of the Magnetics Society of Japan. 2023, 47 (4), 2307R005. https://doi.org/10.3379/msjmag.2307r005
SAMURAI

説明:

(abstract)

Two types of magnetoresistance (MR), i.e., tunnel magnetoresistance (TMR) and current perpendicular to plane giant magnetoresistance (CPP-GMR), are theoretically discussed for systems with half-metallic (HFM) Co-based full Heusler compounds. In TMR, the non-collinear spin structure at the Co2MnSi(CMS)/MgO(001) interface that results from thermal spin fluctuations significantly reduced the TMR ratio at room temperature (RT). Enhancement of the exchange stiffness of CMS/MgO was essential to suppress the reduction in TMR at RT. Furthermore, it is proposed that inserting of a B2-CoFe layer between CMS and MgO is a promising way to enhance the interface exchange stiffness constant. In CPP-GMR, the interface spin asymmetry γ in the Valet-Fert model was essential to enhance GMR at RT, because the temperature dependence of γ in experiments was much larger than that of the bulk spin asymmetry β. I showed that the experimental CPP-GMR ratio increases with the decrease in the theoretical resistance-area product RPA, which is roughly consistent with the RP dependence of γ. This means that matching of the conductive channel between HMF and a non-magnetic metallic spacer is a key parameter to enhance γ. These findings will be very important for room temperature spintronics devices applied in future artificial intelligence hardware.

権利情報:

キーワード: magnetoresistance, first-principles calculation, Heusler compound, TMR, CPP-GMR, ballistic transport, exchange stiffness

刊行年月日: 2023-07-01

出版者: The Magnetics Society of Japan

掲載誌:

  • Journal of the Magnetics Society of Japan (ISSN: 18822924) vol. 47 issue. 4 p. 90-102 2307R005

研究助成金:

  • JSPS Grants-in-Aid for Scientifc Research (Grant Nos. 17H06152, 20H00299, 20H02190, 20H02186, 21H01750 and 22H04966)

原稿種別: 出版者版 (Version of record)

MDR DOI:

公開URL: https://doi.org/10.3379/msjmag.2307r005

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更新時刻: 2024-05-24 16:30:15 +0900

MDRでの公開時刻: 2024-05-24 16:30:16 +0900

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