Fabrication of DC-SQUID using an as-grown MgB2 Film
Author:
Affiliation:
1. JST satellite Iwate, Japan Science and Technology (JST)
2. Graduate school of Engineering, Iwate University
3. Lightm
4. Iwate Industrial Research Institute
Publisher
Cryogenic Association of Japan
Link
https://www.jstage.jst.go.jp/article/jcsj/43/8/43_8_354/_pdf
Reference16 articles.
1. 1) J. Nagamatsu, N. Nakagawa, T. Muranaka, Y. Zenitani and J. Akimitsu: “Superconductivity at 39K in magnesium diboride,” Nature 410 (2001) 63-64
2. 2) X. Zeng, A. V. Pogrebnyakov, A. Kotcharov, J. E. Jones, X. X. Xi, E. M. Lysczek, J. M. Redwing, S. Xu, Q. Li, J. Lettieri, D. G. Schlom, W. Tian, X. Pan and Z. K. Liu: ”In situ epitaxial MgB2 thin films for superconducting electronics,” Nature Mater. 1 (2002) 35-38
3. 3) W. N. Kang, E. M.Choi, H. J. Kim, H. J. Kim and S. I. Lee: “Growth of superconducting MgB2 thin films via postannealing techniques,” Physica C 385 (2003) 24-30
4. 4) S. H. Moon, H. M. Kim, S. S. Yim, K. B. Kim, Y. W. Kim, S. I. Yoo and H. N. Lee: “Superconducting properties and microstructures of MgB2 thin films prepared by the ex situ annealing process,” Supercond. Sci. Technol. 17 (2004) S15-S19
5. 5) K. Ueda and M. Naito: “In situ growth of superconducting MgB2 thin films by molecular beam epitaxy,” J. Appl. Phys. 93 (2003) 2113-2120
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