Multiple-Charge Beam Dynamics in an Ion Linac
P. N. Ostroumov, J. A. Nolen, K. W. Shepard
Abstract
There is demand for the construction of a medium-energy ion linear accelerator based on superconducting rf (SRF) technology. It must be capable of producing several hundred kilowatts of CW beams ranging from protons to uranium. A considerable amount of power is required in order to generate intense beams of rare isotopes for subsequent acceleration. At present, however, the beam power available for the heavier ions would be limited by ion source performance. To overcome this limit, we have studied the possibility of accelerating multiple-charge-state (multi-Q) beams through a linac. We show that such operation is made feasible by the large transverse and longitudinal acceptance which can be obtained in a linac using superconducting cavities. Multi-Q operation provides not only a substantial increase in beam current, but also enables the use of two strippers, thus reducing the size of linac required. Since the superconducting (SC) linac operates in CW mode, space charge effects are essentially eliminated except in the ECR/RFQ region. Therefore an effective emittance growth due to the multi-charge beam acceleration can be minimized.
Create a lesson
Related papers
Reconstruction of Beam Transverse Parameters in the Fermilab Side-Coupled Linac Using a Normalized Coordinate Framework
E. V. Chen, J-P. Carneiro, R. V. Sharankova et al.
Coherent collective amplification of terahertz microbunching seeded by laser frequency beating in relativistic electron beams
Wencai Cheng, Yin Kang, Kaiqing Zhang et al.
Heavy ion driven plasma wakefield acceleration with drift-like phase-shift acceleration scheme
Li Jiangdong, Xia Guoxing, Liu Jie et al.
Ultralow Mean Transverse Energy and High Quantum Efficiency Cryogenic Bialkali Photocathode for MHz-Repetition-Rate Electron Sources
D. Wang, S. Liu, J. Liu et al.
First Cobotic-Assisted String Assembly of PIP-II SSR2 Cavities at Fermilab
M. Parise, T. Aiazzi, C. Narug
PIP-II Project Progress and Challenges
O. Napoly