Microstructure and Superconductivity in Epitaxial MgO/NbN Multilayers
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概要
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The aim of this investigation is to achieve high transition temperature, low resistivity films under conditions suitable for use in all-NbN Josephson junction fabrication. For this purpose, the heteroepitaxy of NbN on MgO films is investigated. For substrate temperature of 200°C or thereabouts, polycrystalline MgO films of (200) orientation were formed on (100) silicon, ($1\bar{1}02$) $\alpha$-Al2O3, and fused silica. Based on XTEM, HEED and X-ray data, heteroepitaxial growth ((100)NbN$\varparallel$(100)MgO) was obtained in NbN films and NbN/MgO/NbN trilayers deposited on (200) oriented MgO films. The epitaxial NbN films of 10 nm thickness had high transition temperatures of about 14 K, and relatively low residual resistivities of less than 200 $\mu$$\Omega$$\cdot$cm. Using the GL relationships, we calculated the Ginzburg-Landau parameters, $\lambda$(0) and $\xi$, of our NbN films in the dirty limit. The calculated $\xi$(4.2 K) and $\lambda$(0) are $\sim 4.5$ nm and $\sim 300$ nm, respectively.
- INSTITUTE OF PURE AND APPLIED PHYSICSの論文
- 1989-08-20
著者
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Yamashita Tsutomu
Department Of Electrical Engineering Technological University Of Nagaoka
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Hamasaki Katsuyoshi
Department Of Electrical Engineering Nagaoka University Of Technology
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Komata Toranosuke
Deparment of Electronics, Kanazawa Institute of Technology, Nonoichi, Ishikawa 921
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Nagaoka Shiro
TOSOH Corporation, Advanced Materials Research Laboratory, Hayakawa, Ayase 252
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