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論文

Surface coverage dependence of spin-to-charge current across Pt/MoS$$_{2}$$/Y$$_{3}$$Fe$$_{5}$$O$$_{12}$$ layers via longitudinal spin Seebeck effect

Lee, W.-Y.*; Park, N.-W.*; Kang, M.-S.*; Kim, G.-S.*; Jang, H. W.*; 齊藤 英治; Lee, S.-K.*

Journal of Physical Chemistry Letters (Internet), 11(13), p.5338 - 5344, 2020/07

 被引用回数:11 パーセンタイル:63.74(Chemistry, Physical)

The voltage induced by the inverse spin Hall effect (ISHE) is affected by several factors, including the spin Hall angle of the normal metal (NM), the quality and magnetic properties of the ferromagnetic material (FM), and the interface conditions between the NM and FM bilayers in longitudinal spin Seebeck effect (LSSE) measurement. Specifically, the interface conditions in NM/FM systems via LSSE devices play a crucial role in determining the efficiency of spin current injection into the NM layer. In this letter, we report a new approach to controlling the efficiency of spin current injection into a Pt layer across a Pt/Y$$_{3}$$Fe$$_{5}$$O$$_{12}$$ (YIG) interface by surface coverage of the intermediate layer. A continuous, large-area multilayer molybdenum dichalcogenide (MoS$$_{2}$$) thin film grown by chemical vapor deposition is inserted between the Pt and YIG layers in the LSSE configuration. We found that, when the large-area multilayer MoS$$_{2}$$ film was present, the measured ISHE-induced voltage and theoretically calculated spin current in the Pt/MoS$$_{2}$$/YIG trilayer increased by $$sim$$510% and 470%, respectively, compared to those of a Pt/YIG bilayer. The induced voltage and spin current were very sensitive to the surface conductance, which was affected by the surface coverage of the multilayer MoS$$_{2}$$ films in the LSSE measurement. Furthermore, the theoretically calculated spin current and spin mixing conductance in the trilayer geometry are in qualitatively good agreement with the experimental observations. These measurements enable us to explain the effect of the interface conditions on the spin Seebeck effect in spin transport.

口頭

The 1st joint environmental radiation survey around the Fukushima Daiichi Nuclear Power Plant between JAEA and KAERI

Ji, Y.-Y.*; 三上 智; Hong, B. S.*; 眞田 幸尚; Jang, M.*; 越智 康太郎; 中間 茂雄

no journal, , 

According to the implementing arrangement in the field of the radiation protection and environmental radiation monitoring between JAEA and KAERI, the joint survey around the Fukushima Daiichi Nuclear Power Plants (FDNPP) was conducted to assess the radioactive cesium deposition in the ground on October 1-4, 2018. The technical purpose of environmental radiation survey was to make a field application of developed survey system and method, because their performances in the contaminated area were very important things with respect to the appropriate response to the nuclear accident. Therefore, all survey results and methods between two institutes were shared and compared to be experimentally verified during the joint survey. The mobile gamma-ray spectrometry using backpack and carborne survey platforms was conducted to evaluate ambient dose equivalent rate around the survey sites and the carborne survey route from site to site, respectively.

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