DocumentCode :
740024
Title :
Nonlinear Circuit Model for Discontinuity of Step in Width in Superconducting Microstrip Structures and Its Impact on Nonlinear Effects
Author :
Javadzadeh, Seyed Mohammad Hassan ; Farzaneh, Forouhar ; Fardmanesh, Mehdi
Author_Institution :
Dept. of Electr. Eng., Sharif Univ. of Technol., Tehran, Iran
Volume :
23
Issue :
2
fYear :
2013
fDate :
4/1/2013 12:00:00 AM
Firstpage :
1301208
Lastpage :
1301208
Abstract :
Superconducting materials are known to exhibit nonlinear effects and to produce harmonic generation and intermodulation distortion in superconductive circuits. In planar structures, these nonlinearities depend on the current distribution on the strip which is mainly determined by the structure of the device. This paper investigates the current distribution at the step-in-width discontinuity in superconducting microstrip transmission lines, which is computed by a numerical approach based on a 3-D finite-element method. This current distribution is used to obtain the parameters of the nonlinear circuit model for the superconducting microstrip step-in-width discontinuity. The proposed equivalent nonlinear circuit can be solved using the harmonic balance method. Examples of two superconducting structures which contain the steps in width are given and validated by comparison with electromagnetic full-wave results. The proposed model can be used for effective optimization of the superconducting microwave filter resonators in order to minimize their nonlinear distortions.
Keywords :
finite element analysis; microstrip lines; microwave filters; nonlinear distortion; nonlinear equations; optimisation; superconducting microwave devices; superconducting resonators; 3D finite-element method; current distribution; effective optimization; harmonic balance method; harmonic generation; intermodulation distortion; nonlinear circuit model; nonlinear distortions; nonlinear effect impact; numerical approach; planar structures; superconducting materials; superconducting microstrip step-in-width discontinuity; superconducting microstrip transmission lines; superconducting microwave filter resonators; superconductive circuits; Computational modeling; Current distribution; Integrated circuit modeling; Microstrip; Nonlinear circuits; Superconducting microwave devices; Superconducting transmission lines; Circuit modeling; current distribution; nonlinearity; step-in-width discontinuity; superconducting microstrip;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2012.2237510
Filename :
6425518
Link To Document :
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