Author:
Kasparek W.,Petelin M.I.,Shchegolkov D.Yu,Erckmann V.,Plaum B.,Bruschi A.
Abstract
A fast directional switch (FADIS) is described, which allows controlled switching of high-power microwaves between two outputs. A possible application could be synchronous stabilization of neoclassical tearing modes (NTMs). Generally, the device can be used to share the installed EC power between different types of launchers or different applications (e.g. in ITER, midplane/upper launcher). The switching is performed electronically without moving parts by a small frequency-shift keying of the gyrotron (some tens of megahertz), and a narrow-band diplexer. The device can be operated as a beam combiner also, which offers attractive transmission perspectives in multi-megawatt ECRH systems. In addition, these diplexers are useful for plasma diagnostic systems employing high-power sources due to their filter characteristics.
The principle and the design of a four-port quasi-optical resonator diplexer is presented. Low-power measurements of switching contrast, mode purity and efficiency show good agreement with theory. Preliminary frequency modulation characteristics of gyrotrons are shown, and first results from high-power switching experiments using the ECRH system for W7-X are presented.
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Reference30 articles.
1. Experiments on neoclassical tearing mode stabilization by ECCD in ASDEX Upgrade;Nucl. Fusion,1999
2. Cross-machine benchmarking for ITER of neoclassical tearing mode stabilization by electron cyclotron current drive;Nucl. Fusion,2006
3. Electrically controlled scanning of wave beam produced by gyrotron: option for plasma fusion experiment
4. Fast switching and power combination of high-power electron cyclotron wave beams: principles, numerical results and experiments;Fusion Sci. Technol.,2007
5. Quasi-Optical Components for MMW Fed Radars and Particle Accelerators, in High Energy Density Microwaves;AIP Conf. Proc.,1998
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