NUMERICAL MODELING OF HIGH-SPEED ELECTRONIC DEVICES USING HIGH-TC SUPERCONDUCTORS

Award Information
Agency:
Department of Defense
Branch:
Army
Amount:
$59,870.00
Award Year:
1989
Program:
SBIR
Phase:
Phase I
Contract:
N/A
Agency Tracking Number:
10142
Solicitation Year:
N/A
Solicitation Topic Code:
N/A
Solicitation Number:
N/A
Small Business Information
Scientific Research Assocs Inc
Po Box 1058 - 50 Nye Rd, Glastonbury, CT, 06033
Hubzone Owned:
N
Socially and Economically Disadvantaged:
N
Woman Owned:
N
Duns:
N/A
Principal Investigator
 Harold L Grubin
 (203) 659-0333
Business Contact
Phone: () -
Research Institution
N/A
Abstract
THIS DOCUMENT DISCUSSES A PROPOSAL TO PERFORM NUMERICAL SIMULATIONS OF ELECTRONIC DEVICES MAKING USE OF THE RECENTLY DISCOVERED HIGH-T(C) SUPERCONDUCTING OXIDES. NUMERICAL SIMULATIONS ARE TO BE PERFORMED THROUGH IMPLEMENTATION OF SCIENTIFIC RESEARCH ASSOCIATES INC.'S (SRA) ALGORITHMS: STARTING WITH FROM THE GINZBURG-LANDAU EQUATIONS, THE EQUATIONS GOVERNING THE DYNAMICS OF THE SUPERCONDUCTORS ARE WRITTEN IN A FORM VERY SIMILAR TO THE EQUATIONS OF HYDRODYNAMICS. WE PROPOSE A TECHNIQUE TO COUPLE THE SUPERCONDUCTING FLUID EQUATIONS, THE DEVICE (SEMICONDUCTING) EQUATIONS AND MAXWELL'S EQUATIONS. THE TECHNIQUE IS THEN APPLIED TO STUDY THE PROPAGATION CHARACTERISTICS OF SUPERCONDUCTING MICROSTRIP LINES AND WIRES.

* information listed above is at the time of submission.

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