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State-of-the-art of high power gyro-devices and free electron masers 1994

机译:最先进的高功率陀螺仪器和自由电子脉冲器1994

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At present, gyrotron oscillators are mainly used as high power millimeter wave sources for electron cyclotron resonance heating (ECRH) and diagnostics of magnetically confined plasmas for generation of energy by controlled thermonuclear fusion. 140 GHz gyrotrons with output power P(sub out)=0.54 MW, pulse length (tau)=3.0 s and efficiency (eta)=42% are commercially available. Total efficiencies around 50% have been achieved using single-stage depressed collectors. Diagnostic gyrotrons deliver P(sub out)=40 kW with (tau)=40 (mu)s at frequencies up to 650 GHz ((eta)(>=)4%). Recently, gyrotron oscillators have also been successfully used in material processing and plasma chemistry. Such technological applications require gyrotrons with the following parameters: f(>=)24 GHz, P(sub out)=10-50 kW, CW, (eta)(>=)30%. This paper reports on achievements and problems related to the development of very high power mm-wave gyrotrons for long pulse or CW operation and describes the microwave technological pecularities of the different development steps. In addition, this work gives a short overview of the present development of gyrotrons for technological applications, relativistic gyrotrons, quasi-optical gyrotrons, cyclotron autoresonance masers (CARMs), gyro klystrons, gyro-TWT amplifiers, gyrotwystron amplifiers, gyro-BWO's, peniotrons and free electron masers (FEMs). The most impressive FEM output parameters are: P(sub out)=2 GW, (tau)=20 ns, (eta)=13% at 140 GHz (LLNL) and P(sub out)=15 kW, (tau)=20 (mu)s, (eta)=5% in the range from 120 to 900 GHz (UCSB). (orig.)

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