Generation of Microwave Pulses with a Carrier Frequency of 3.8 GHz and a Length of 75 ns by a Relativistic Cherenkov Microwave Oscillator without a Guiding Magnetic Field

In the experiment with an electron energy of ≈500 keV, the long-pulse (~300T, where T is the oscillation period) the generation regime of a relativistic Cherenkov microwave oscillator without a guiding magnetic field at a carrier frequency of 3.8 GHz has been obtained. A high-power microwave radiati...

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Veröffentlicht in:Technical physics 2018-04, Vol.63 (4), p.581-584
Hauptverfasser: Tot’meninov, E. M., Stepchenko, A. S., Rostov, V. V., Klimov, A. I.
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container_end_page 584
container_issue 4
container_start_page 581
container_title Technical physics
container_volume 63
creator Tot’meninov, E. M.
Stepchenko, A. S.
Rostov, V. V.
Klimov, A. I.
description In the experiment with an electron energy of ≈500 keV, the long-pulse (~300T, where T is the oscillation period) the generation regime of a relativistic Cherenkov microwave oscillator without a guiding magnetic field at a carrier frequency of 3.8 GHz has been obtained. A high-power microwave radiation pulse length of ~75 ns, a peak generation power of 210 ± 30 MW, and a power conversion efficiency of 9 ± 2% were attained.
doi_str_mv 10.1134/S1063784218040254
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identifier ISSN: 1063-7842
ispartof Technical physics, 2018-04, Vol.63 (4), p.581-584
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1090-6525
language eng
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source SpringerNature Journals
subjects Analysis
Classical and Continuum Physics
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
CONVERSION
EFFICIENCY
Electric fields
Electron energy
ELECTRONS
Energy conversion efficiency
GHZ RANGE 01-100
KEV RANGE 100-1000
MAGNETIC FIELDS
Microwave equipment
Microwave oscillators
MICROWAVE RADIATION
Microwaves
OSCILLATIONS
OSCILLATORS
Physics
Physics and Astronomy
PULSES
Radiation (Physics)
Radiophysics
Relativism
Relativistic effects
RELATIVISTIC RANGE
title Generation of Microwave Pulses with a Carrier Frequency of 3.8 GHz and a Length of 75 ns by a Relativistic Cherenkov Microwave Oscillator without a Guiding Magnetic Field
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