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Phase Measurements of a 140-GHz Confocal Gyro-Amplifier

Author(s)
Rosenzweig, Guy; Jawla, Sudheer K.; Picard, Julian F.; Shapiro, Michael; Temkin, Richard J
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Abstract
The phase stability of a 140-GHz, 1-kW pulsed gyro-amplifier system and the phase dependence on the cathode voltage were experimentally measured. To optimize the measurement precision, the amplifier was operated at 47 kV and 1 A, where the output power was ∼30 W. The phase was determined to be stable both pulse-to-pulse and during each pulse, so far as the cathode voltage and electron beam current are constant. The phase variation with voltage was measured and found to be 130 ± 30°/kV, in excellent agreement with simulations. The electron gun used in this device is non-adiabatic, resulting in a steep slope of the beam pitch factor with respect to cathode voltage. This was discovered to be the dominant factor in the phase dependence on voltage. The use of an adiabatic electron gun is predicted to yield a significantly smaller phase sensitivity to voltage, and thus a more phase-stable performance. To our knowledge, these are the first phase measurements reported for a gyro-amplifier operating at a frequency above W-band.
Date issued
2020-10
URI
https://hdl.handle.net/1721.1/128268
Department
Massachusetts Institute of Technology. Plasma Science and Fusion Center; Massachusetts Institute of Technology. Department of Physics
Journal
Journal of Infrared, Millimeter, and Terahertz Waves
Publisher
Springer Science and Business Media LLC
Citation
Rosenzweig, Guy et al. "Phase Measurements of a 140-GHz Confocal Gyro-Amplifier." Journal of Infrared, Millimeter, and Terahertz Waves 41 (October 2020): doi.org/10.1007/s10762-020-00751-w © 2020 Springer Science Business Media, LLC, part of Springer Nature
Version: Author's final manuscript
ISSN
1866-6892
1866-6906

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