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Voelker, F.; Lambertson, G.
Lawrence Berkeley Lab., CA (USA)1989
Lawrence Berkeley Lab., CA (USA)1989
AbstractAbstract
[en] We have measured the longitudinal beam impedance of a typical pulsed magnet that will be used in the Advanced Light Source. The magnets are of a ferrite window-frame design with a single plate conductor on each side. Two separate power supplies are used to drive current in opposite directions in the two conductors. The continuity of the ferrite yoke is interrupted by two copper plates 1 mm thick in the center of the top and bottom of the window frame. This increases the reluctance of the magnetic path, and thus decreases the flux which couples the beam. The measurements were made by exciting a 1/8'' rod along the beam path through the magnet. This makes a 185 ohm transmission line, and it was terminated in a resistive divider at the exit end. A 3 GHz network analyzer was used to measure S21 through the magnet, and longitudinal beam impedance was calculated from this data. The impedance is dominated by two low frequency resonances in the magnet winding and drive current. 8 figs
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Mar 1989; 5 p; 13. particle accelerator conference; Chicago, IL (USA); 20-23 Mar 1989; CONF-890335--181; Available from NTIS, PC A02/MF A01 - OSTI; 1 as DE89012728; Portions of this document are illegible in microfiche products.
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