DocumentCode :
1506165
Title :
2.5-THz GaAs monolithic membrane-diode mixer
Author :
Siegel, Peter H. ; Smith, R. Peter ; Graidis, M.C. ; Martin, Suzanne C.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Volume :
47
Issue :
5
fYear :
1999
fDate :
5/1/1999 12:00:00 AM
Firstpage :
596
Lastpage :
604
Abstract :
A novel GaAs monolithic membrane-diode (MOMED) structure has been developed and implemented as a 2.5-THz Schottky diode mixer. The mixer blends conventional machined metallic waveguide with micromachined monolithic GaAs circuitry to form, for the first time, a robust, easily fabricated, and assembled room-temperature planar diode receiver at frequencies above 2 THz. Measurements of receiver performance, in air, yield at Treceiver of 16500-K double sideband (DSB) at 8.4-GHz intermediate frequency (IF) using a 150-K commercial Miteq amplifier. The receiver conversion loss (diplexer through IF amplifier input) measures 16.9 dB in air, yielding a derived “front-end” noise temperature below 9000-K DSB at 2514 GHz. Using a CO2-pumped methanol far-infrared laser as a local oscillator at 2522 GHz, injected via a Martin-Puplett diplexer, the required power is ≈5 mW for optimum pumping and can be reduced to less than 3 mW with a 15% increase in receiver noise. Although demonstrated as a simple submillimeter-wave mixer, the all-GaAs membrane structure that has been developed is suited to a wide variety of low-loss high-frequency radio-frequency circuits
Keywords :
III-V semiconductors; Schottky diode mixers; gallium arsenide; membranes; submillimetre wave mixers; submillimetre wave receivers; 2.5 THz; FIR pumping; GaAs; GaAs monolithic membrane-diode mixer; Schottky diode mixer; conversion loss; machined metallic waveguide; micromachined monolithic GaAs circuit; noise temperature; planar diode receiver; radiofrequency circuit; submillimeter-wave mixer; Assembly; Circuits; Frequency measurement; Gallium arsenide; Loss measurement; Noise measurement; Planar waveguides; Robustness; Schottky diodes; Waveguide components;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.763161
Filename :
763161
Link To Document :
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