Space charge dynamics in high intensity rings
Open Access
- 29 November 1999
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Special Topics - Accelerators and Beams
- Vol. 2 (11), 114202
- https://doi.org/10.1103/physrevstab.2.114202
Abstract
Uncontrolled beam losses due to space-charge-induced halo generation are a concern in high intensity rings, which are characterized by high beam intensities and low uncontrolled beam loss requirements. It is therefore important to investigate the dynamics of space charge in high intensity rings. We report here the results of extensive calculations using a particle-tracking approach with a self-consistent particle-in-cell model and alternatively with a particle core model. We find that the inclusion of space charge forces provides agreement between calculated and experimentally observed beam profile shapes in the high intensity proton storage ring. We also confirm computationally the extension to rings of the accepted dynamics of halo generation with rms beam mismatch exciting the parametric resonance. In addition, we propose a new two-stage mechanism for halo production in rings in which space-charge-driven lattice resonances generate beam mismatch that excites the parametric resonance. Because of its dependence on lattice resonances, this mechanism is peculiar to rings and is capable of generating halo even from initially matched beams. It is also very sensitive to the operating point in tune space, as we show in the results of a vertical tune scan simulating injection into the Spallation Neutron Source accumulator ring. Our results extend and enhance the understanding of fundamental space charge physics, which has been developed for linear accelerators, to rings.Keywords
This publication has 13 references indexed in Scilit:
- Space-Charge Dominated Beams in SynchrotronsPhysical Review Letters, 1998
- Self-consistent beam distributions with space charge and dispersion in a circular ring latticePhysical Review E, 1998
- Hamiltonian formalism for space charge dominated beams in a uniform focusing channelPhysical Review E, 1995
- Envelope Hamiltonian of an intense charged-particle beam in periodic solenoidal fieldsPhysical Review E, 1995
- Analytic Model for Halo Formation in High Current Ion LinacsPhysical Review Letters, 1994
- On halo formation from space-charge dominated beamsNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1994
- Nonlinear properties of the Kapchinskij-Vladimirskij equilibrium and envelope equation for an intense charged-particle beam in a periodic focusing fieldPhysical Review E, 1994
- Construction of higher order symplectic integratorsPhysics Letters A, 1990
- RMS Envelope Equations with Space ChargeIEEE Transactions on Nuclear Science, 1971
- Possible Emittance Increase through Filamentation Due to Space Charge in Continuous BeamsIEEE Transactions on Nuclear Science, 1971