Method of manufacturing a superconducting magnesium diboride...

Coating processes – Electrical product produced – Superconductor

Reexamination Certificate

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C427S255380, C427S566000, C427S585000, C029S599000, C204S192240

Reexamination Certificate

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10781644

ABSTRACT:
A superconducting magnesium diboride (MgB2) thin film having c-axial orientation and a method and apparatus for fabricating the same are provided. The fabrication method includes forming a boron thin film on a substrate and thermally processing the substrate on which the boron thin film is formed along with a magnesium source and cooling the resulting structure. The superconducting magnesium diboride thin film can be used in a variety of electronic devices employing superconducting thin films, such as precision medical diagnosis equipment using superconducting quantum interface devices (SQUIDs) capable of sensing weak magnetic fields, microwave communications equipment used for satellite communications, and Josephson devices. Computer systems with 100 times greater computing speed can be implemented with the superconducting magnesium diboride thin film.

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Shinde et al. “Superconducting MgB2 thin films by pulsed laser deposition”, Applied Physics Letters, vol. 79, No. 2, pp. 227-22.
He et al., “Reactivity of MgB2 with common substarte and electronic materials”, Applied Physics Letters, vol. 80, No. 2, pp. 291-293.
Lee et al., “Synthesis of Uniformly Distributed Carbon Nanotubes on a Large Area of Si Substrates by Thermal Chemical Vapor Deposition,” Applied Physics Letter, Sep. 20, 1999, vol. 75, No. 12, pp. 1721-1723.
Kang, W. et al., Epitaxial MgB2 Superconducting thin films with a transition temperature of 39 Kelvin,Science, 292, 1521 (Mar. 8, 2001); http://lanl.arxiv.org/abs/cond-mat/0103179.
Kang, W. et al., Epitaxial MgB2 Superconducting Thin Films with a Transition Temperature of 39 Kelvin, pp. 1-3 (Mar. 9, 2001) (a copy of web pre-print at http://lanl.arxiv.org/abs/cond-mat/0103179).
Kang, W. et al., Epitaxial MgB2 Superconducting Thin Films with a Transition Temperature of 39 Kelvin, Los Alamos National Laboratory, Preprint Archive, Condensed Matter (Mar. 9, 2001) (an STN search result from the Japanese Patent Office).

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