Beam characterization at BATMAN for variation of the Cs evaporation asymmetry and comparing two driver geometries
Author(s) -
E. Aza,
L. Schiesko,
Christian Wimmer,
D. Wünderlich,
U. Fantz
Publication year - 2017
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4995757
Subject(s) - beam (structure) , asymmetry , deflection (physics) , materials science , ion beam , evaporation , optics , atomic physics , physics , quantum mechanics , thermodynamics
The properties of the negative hydrogen ion beam produced by the scaled prototype ITER NBI source at the BATMAN testbed were investigated by means of two beam diagnostics: Beam Emission Spectroscopy (BES) and a calorimeter. Two modifications to the prototype were applied. The first was the installation of a second Cs oven at the bottom part of the backplate in addition to the standard one at the upper part of the backplate varying the Cs evaporation asymmetry inside the source. The second consisted in the replacement of the cylindrical driver with a larger racetrack-shaped RF driver and placing a single Cs oven in a central position at the backplate of the driver. The resulting beam characteristics are discussed and compared with those obtained with the previous source design. The position of the Cs oven and the different driver size and geometry appear not to influence the beam profile and the beam deflection for a well-conditioned source.
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