DocumentCode
1068299
Title
Optimizing Superconducting Matching Circuits for Nb SIS Mixers Operating Around the Gap Frequency
Author
Lodewijk, C.F.J. ; Noroozian, O. ; Loudkov, D.N. ; Zijlstra, T. ; Baryshev, A.M. ; Mena, F.P. ; Klapwijk, T.M.
Author_Institution
Delft Univ. of Technol., Delft
Volume
17
Issue
2
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
375
Lastpage
378
Abstract
The bandwidth and noise temperature of superconducting-insulating-superconducting (SIS) mixers are strongly determined by the matching between antenna and tunnel-junction. Optimal scientific benefit from Band 9 (600 to 720 GHz) of the Atacama large millimeter array requires a proper design of the matching circuit by taking into account the energy gap of the niobium (680 GHz). In preliminary experiments we have found that tapered structures lead to significant improvements, which suggests that a systematic analysis of optimized geometrical shapes might be beneficial. The tuning circuits are analysed using a model, which includes the Mattis-Bardeen theory for the surface impedance of Nb and which allows arbitrary shapes. We will present simulations and experimental results focusing on the transmission efficiency, which can conveniently be evaluated experimentally by using a Fourier transform spectrometer. We will show how the shape influences the transmission efficiency and relate it to observed noise temperatures of the mixers.
Keywords
Fourier transform spectra; antenna arrays; circuit tuning; niobium; submillimetre wave antennas; superconducting arrays; superconductor-insulator-superconductor mixers; surface impedance; Atacama large millimeter array; Fourier transform spectrometer; Nb - Interface; SIS mixers; antenna; energy gap; frequency 600 GHz to 720 GHz; superconducting matching circuit; superconducting-insulating-superconducting mixers; surface impedance; tuning circuits; tunnel-junction; Bandwidth; Circuit analysis; Circuit noise; Circuit optimization; Frequency; Niobium; Shape; Superconducting device noise; Superconducting devices; Temperature;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2007.897336
Filename
4277567
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