Title :
Longitudinal feedback system kicker for the PLS storage ring
Author :
Kim, Yujong ; Kwon, M. ; Huang, J.-Y. ; Namkung, W. ; Ko, I.S.
Author_Institution :
Accel. Lab., POSTECH, Pohang, South Korea
fDate :
4/1/2000 12:00:00 AM
Abstract :
The higher order modes (HOMs) of RF cavities at the Pohang Light Source (PLS) storage ring cause longitudinal coupled bunch mode instabilities. A longitudinal feedback system (LFS) is introduced to cure these instabilities. As a key component of the LFS, there is a single-ridged waveguide-overloaded cavity for a longitudinal bunch-by-bunch LFS kicker. Since the RF frequency is 500 MHz, the bandwidth of this kicker should be wider than 250 MHz to damp any coupled bunch mode. Also, a higher shunt impedance of the kicker is selected to use a lower power amplifier. One aluminum kicker is fabricated, and the bandwidth, HOMs, and the shunt impedance of the kicker are measured with a network analyzer. This kicker has several different features from the LFS kicker for DAΦNE. First of all, there are four input/output ports to obtain a wider bandwidth. Second, there is a nose cone to obtain a higher shunt impedance. Third, the symmetric frequency response of the shunt impedance around the central frequency is provided. Finally, low beam coupling power (4 W per port at 400 mA) is obtained. According to the simulation result by the high frequency structure simulator (HFSS) code, we obtained the high shunt impedance of 621.3 Ω (transit time factor considered value) and the wide bandwidth of 255 MHz. These are compared with the measured result
Keywords :
beam handling equipment; electron accelerators; particle beam bunching; particle beam stability; storage rings; 255 MHz; 500 MHz; PLS storage ring; Pohang Light Source; RF frequency; beam coupling power; high frequency structure simulator code; higher order modes; longitudinal coupled bunch mode instabilities; longitudinal feedback system kicker; power amplifier; shunt impedance; single-ridged waveguide-overloaded cavity; symmetric frequency response; Bandwidth; Feedback; High power amplifiers; Impedance; Light sources; Optical coupling; Radio frequency; Radiofrequency amplifiers; Storage rings; Waveguide components;
Journal_Title :
Nuclear Science, IEEE Transactions on