Experimental demonstration of the short bunch extraction by bunch rotation in a high-intensity rapid cycling proton synchrotron
Linhao Zhang, Yukai Chen, Jingyu Tang, Xiao Li, Yang Liu, and, Liangsheng Huang

TL;DR
This paper demonstrates experimentally that bunch rotation in a high-intensity rapid cycling proton synchrotron can effectively produce short proton bunches suitable for neutron and muon beam applications, with results aligning well with theoretical predictions.
Contribution
It provides the first experimental validation of short bunch extraction via bunch rotation in a high-intensity RCS, including effects of machine settings and space charge.
Findings
Achieved a 53% bunch length reduction at 50 kW beam power.
Achieved a 26% bunch length reduction at 30 kW beam power.
Validated the effectiveness of RF-magnetic field desynchronization.
Abstract
Short bunch proton beams are of great significance for the applications of white neutron beams and muon beams. The accelerator complex of China Spallation Neutron Source (CSNS) was designed to support the applications mainly based on neutron scattering techniques where the proton pulse length is not very sensitive. Some theoretical and experimental studies have been performed to see if one can extract a short-bunch proton beam by bunch rotation from the rapid cycling synchrotron (RCS) at CSNS. The experimental results at RCS have evidently displayed the bunch lengthening and rotation process, which demonstrates the effectiveness of this method even with a very short available time for the RF gymnastic processes and a high-intensity beam. With a beam power of 50 kW and normal longitudinal emittance at the injection, the proton beam with a bunch length of about 53% with respect to the one…
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