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Radio electronics / Superconductivity / Electromagnetic spectrum / Sensors / Josephson effect / Superconducting tunnel junction / Niobium / Microwave / Terahertz radiation / Physics / Electronic engineering / Electromagnetism


Development of SIS mixers for 1 THz J. Zmuidzinasa, J. Kooia , J. Kawamuraa , G. Chattopadhyaya , B. Bumbleb , H. G. LeDucb , and J. A. Sternb a California b Center
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Document Date: 2004-02-16 22:32:26


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City

Orlando / SOFIA / G. P / /

Company

Oxford University Press / Space Microelectronics Technology / NbTiN Films / Jet Propulsion Laboratory / /

Facility

Caltech Submillimeter Observatory / Center Institute of Technology / California Institute of Technology / /

IndustryTerm

gap energy / normal metal tuning structures / mixers using niobium devices / niobium devices / heterodyne devices / normal metal aluminum tuning circuits / photon energy / metal aluminum / metal interstitial compounds / mixer devices / slot devices / energy gap frequency / measure devices / metal aluminum microstrip lines / larger energy gap / mixer chips / normal metal tuning circuit / heterodyne mixer technology / /

Organization

FIRST mission / National Science Foundation / Institute of Technology / National Aeronautics and Space Administration / Center for Space Microelectronics Technology / Oxford University / /

Person

U. Gambardella / V / /

Position

loss conductor / representative / /

ProgrammingLanguage

DC / /

ProvinceOrState

California / /

Technology

radiation / laser / Planar-antenna SIS chip / SIS chip / dielectric / Microwave / ESA / lithography / SIS mixer chips / 91108 ABSTRACT SIS heterodyne mixer technology / /

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