A large-diameter plasma-filled backward-wave oscillator (BWO) is inves
tigated experimentally. The parameters of slow wave structure are chos
en so that the oscillation frequency is about 20 GHz at 60 keV beam en
ergy. Plasma is produced by the beam and has favorable effects for bea
m propagation and Cerenkov oscillations. The output power of the BWO w
ith plasma is observed to be three to six times that of vacuum BWO. Th
e power level is several kilowatts and the efficiency is about 0.01%.
For Cerenkov oscillations of a large-diameter BWO, the beam energy mai
nly determines the starting conditions for oscillation. The output pow
er is strongly enhanced when the guiding magnetic field approaches the
fundamental electron cyclotron resonance. This mechanism is closely r
elated to the anomalous Doppler cyclotron resonance. The maximum power
of 480 kW with an efficiency of 5% is achieved even for a relatively
low beam energy of 60 keV.