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Design and characterization of a 32-channel heterodyne radiometer for electron cyclotron emission measurements on experimental advanced superconducting tokamak
74
Citations
9
References
2014
Year
Electrical EngineeringEngineeringElectron Cyclotron EmissionPhysicsSuperconductivityApplied Plasma PhysicPlasma ScienceX-mode Ece RadiationInstrumentationSynchrotron RadiationMagnetic Confinement Fusion32-Channel Heterodyne RadiometerAccelerator Technology
A 32-channel heterodyne radiometer has been developed for the measurement of electron cyclotron emission (ECE) on the experimental advanced superconducting tokamak (EAST). This system collects X-mode ECE radiation spanning a frequency range of 104-168 GHz, where the frequency coverage corresponds to a full radial coverage for the case with a toroidal magnetic field of 2.3 T. The frequency range is equally spaced every 2 GHz from 105.1 to 167.1 GHz with an RF bandwidth of ~500 MHz and the video bandwidth can be switched among 50, 100, 200, and 400 kHz. Design objectives and characterization of the system are presented in this paper. Preliminary results for plasma operation are also presented.
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