DocumentCode
1542337
Title
Characteristics of junctions and resistors fabricated using an all-NbN superconductor integrated circuit foundry process
Author
Kerber, G.L. ; Abelson, L.A. ; Elmadjian, R.N. ; Ladizinsky, E.G.
Author_Institution
TRW Inc., Redondo Beach, CA, USA
Volume
9
Issue
2
fYear
1999
fDate
6/1/1999 12:00:00 AM
Firstpage
3267
Lastpage
3270
Abstract
Trilayer NbN/MgO/NbN tunnel junctions and Mo and NbN/sub x/ resistors fabricated over a NbN ground plane form the basis of a high performance, 10 K, superconductor integrated circuit foundry process. To produce high yield LSI and VLSI superconductor integrated circuits requires predictable device characteristics, stable, well-characterized, thin film deposition processes, and control of critical dimensions (CD). In this paper, we discuss improvements in thin film deposition processes, device characteristics, and CD control. Repeatable trilayer characteristics have been achieved through the use of feedback control of critical MgO and NbN sputtering parameters. Run-to-run variations in MgO film thickness have been reduced to less than /spl plusmn/1.0% (1/spl sigma/) using a novel computer feedback control technique. Improvements in MgO deposition uniformity and CD control of junction size have reduced across wafer I/sub c/ nonuniformity to less than /spl plusmn/10% (3/spl sigma/) and 100 junction array I/sub c/ nonuniformity on 0.5 cm chips to /spl plusmn/2% (1/spl sigma/). We report on the electrical characteristics of junctions and resistors and on component spreads and stability of our NbN foundry process.
Keywords
niobium compounds; resistors; sputtered coatings; superconducting integrated circuits; 10 K; CD control; LSI; Mo; Mo resistor; NbN; NbN-MgO-NbN; NbN/MgO/NbN trilayer tunnel junction; NbN/sub x/ resistor; VLSI; all-NbN superconductor integrated circuit foundry process; computer feedback control; fabrication; sputtering parameters; thin film deposition; Feedback control; Foundries; Integrated circuit yield; Josephson junctions; Large scale integration; Process control; Resistors; Sputtering; Superconducting integrated circuits; Very large scale integration;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/77.783726
Filename
783726
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