Title :
Measurements of Stability Limits for a Space-Charge-Dominated Ion Beam in a Long a. G. Transport Channel
Author :
Tiefenback, M.G. ; Keefe, D.
Author_Institution :
Lawrence Berkeley Laboratory University of California Berkeley, CA 94720
Abstract :
The Single Beam Transport Experiment at LBL consists of 82 electrostatic quadrupole lenses arranged in a FODO lattice. Five further lenses provide a matched beam from a high-current high-brightness cesium source for injection into the FODO channel. We call the transport conditions stable if both the emittance and current remain unchanged between the beginning and end of the channel, and unstable if either the emittance grows or the current decreases because of collective effects. We have explored the range of single-particle betatron phase advance per period from ¿0 = 45° to 150° to determine the stability limits for the space-charge depressed phase advance, ¿. No lower limit for ¿ (down to 7°) has been found at ¿0= 60°, whereas limits have clearly been identified and mapped in the region of ¿0 above 90°.
Keywords :
Acceleration; Attenuators; Electrostatic measurements; Inertial confinement; Ion beams; Laboratories; Lattices; Lenses; Stability; Voltage control;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.1985.4333954