Photoelectron trapping in quadrupole and sextupole magnetic fields
Creators
- 1. High Energy Accelerator Research Organization (KEK), Tsukuba, Ibaraki 305-0801 (Japan)
Description
A photoelectron-trapping phenomenon has been found in the simulation of the photoelectron cloud. It is found that the photoelectrons can be trapped in the quadrupole and sextupole magnetic fields for very long time until it longitudinally drifts out of the magnets, even a long bunch train separation is not sufficient to clear up the photoelectrons. Therefore, such a kind of long time trapped photoelectron cloud can cause coupled bunch instability. The trapping phenomenon is strongly beam dependent, especially on the bunch length. There is no such kind of trapping if the positron beam does not disturb the photoelectrons during the whole process. There is also no trapping for positron bunch with bunch length longer than the period of the photoelectron's gyration motion at the mirror points. The trapping is a mirror field trap which is caused by beam disturbance. The trapping phenomenon and mechanism will be presented in detail
Additional details
Identifiers
Publishing Information
- Journal Title
- Physical Review. E, Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics
- Journal Volume
- 66
- Journal Issue
- 3
- Journal Page Range
- p. 036502-036502.8
- ISSN
- 1063-651X
- CODEN
- PLEEE8
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 36001897
- Subject category
- S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; S43: PARTICLE ACCELERATORS; S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY;
- Descriptors DEI
- BEAM BUNCHING; COMPUTERIZED SIMULATION; DISTURBANCES; ELECTRONS; INSTABILITY; MAGNETIC FIELDS; MAGNETIC MIRRORS; POSITRON BEAMS; POSITRONS; TRAPPING
- Descriptors DEC
- ANTILEPTONS; ANTIMATTER; ANTIPARTICLES; BEAM DYNAMICS; BEAMS; DYNAMICS; ELEMENTARY PARTICLES; FERMIONS; LEPTON BEAMS; LEPTONS; MATTER; MECHANICS; OPEN PLASMA DEVICES; PARTICLE BEAMS; SIMULATION; THERMONUCLEAR DEVICES
Optional Information
- Notes
- (c) 2002 The American Physical Society