DocumentCode :
1547268
Title :
Remarkable properties of Tl-Ba-Ca-Cu-O thin films following post-growth high-temperature annealing
Author :
Siegal, M.P. ; Overmyer, D.L. ; Venturini, E.L. ; Padilla, R.R. ; Provencio, P.N.
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
Volume :
9
Issue :
2
fYear :
1999
fDate :
6/1/1999 12:00:00 AM
Firstpage :
1555
Lastpage :
1558
Abstract :
Tl-2212 and Tl-1212 are the two easiest unsubstituted Tl-Ba-Ca-Cu-O superconducting thin films to grow. Both phases exhibit T/sub c//spl ges/95 K, J/sub c/(5 K)>10 MA/cm/sup 2/ and smooth morphologies. We report on the properties of both materials following one hour furnace anneals in dry ambients of pure oxygen or nitrogen at temperatures ranging from 50-700/spl deg/C. The stability of these films to high temperatures in each ambient is important for device processing. Of equal interest is the controlled partial volatilization of Tl-oxide at modest temperatures from nano-site regions within Tl-1212 films. We correlate such modifications with increases in flux pinning strength in Tl-1212 films. Tl-2212 films maintain their superconducting properties to even higher temperatures than Tl-1212 films. Optimum annealing appears to also increase flux pinning, although not to the same degree as for Tl-1212 films.
Keywords :
annealing; barium compounds; calcium compounds; critical current density (superconductivity); flux pinning; high-temperature superconductors; superconducting thin films; superconducting transition temperature; thallium compounds; Tl-1212; Tl-2212; Tl-Ba-Ca-Cu-O; Tl-Ba-Ca-Cu-O thin films; controlled partial volatilization; critical current density; device processing; dry ambients; flux pinning strength; furnace anneals; high temperatures; nano-site regions; optimum annealing; post-growth high-temperature annealing; properties; smooth morphologies; stability; superconducting thin films; transition temperature; Annealing; Flux pinning; Furnaces; Morphology; Nitrogen; Superconducting films; Superconducting materials; Superconducting thin films; Temperature; Transistors;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.784691
Filename :
784691
Link To Document :
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