DocumentCode :
1529542
Title :
Development of intrinsic surfaces, and their electronic structures and stability of non-c-axis YBCO epitaxial films
Author :
Ozawa, H. ; Terada, N. ; Kashiwaya, S. ; Takashima, H. ; Koyanagi, M. ; Ihara, H.
Author_Institution :
Electrotech. Lab., Ibaraki, Japan
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
2161
Lastpage :
2164
Abstract :
Surface-cleaning using 100% ozone beams or atomic oxygen beams has been applied for the fabrication of high quality [110]- and (100)-axis oriented YBCO epitaxial films. The treatment recovers metallic surfaces in spite of the semiconducting properties of the as-received surfaces. High quality [110]- and (100)-oriented films with high T/sub c/ and high orientation were deposited by temperature-gradient self-template method. On both kinds of film clear photoelectron Fermi edges, evidence of a metallic feature, were observed at room temperature. For the [110] films, well-defined photoelectron Fermi edges are observed for the first time, For the (100) surface, the rather high electron density of states Fermi edge is as high as about 15% of Cu 3d signal in valence band, On the other hand, the edge-height of the [110] surface was less than 5% of the Cu 3d and it was reduced as a function of time. Detailed electronic structures and the origin of the difference of the surface-stabilities is discussed.
Keywords :
Fermi level; barium compounds; high-temperature superconductors; superconducting epitaxial layers; surface states; surface structure; valence bands; yttrium compounds; YBa/sub 2/Cu/sub 3/O/sub 7/; clear photoelectron Fermi edges; electronic structures; high electron density of states; high temperature superconductor; intrinsic surfaces; non-c-axis YBCO epitaxial films; semiconducting properties; surface-cleaning; temperature-gradient self-template method; valence band; Atomic beams; Atomic layer deposition; Electrons; Fabrication; Molecular beam epitaxial growth; Semiconductivity; Semiconductor films; Surface treatment; Temperature; Yttrium barium copper oxide;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.621021
Filename :
621021
Link To Document :
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