Sequential Computer Simulation of H-minus Ion Dynamics from Source to RFQ Exit with Beam Rotation
https://doi.org/10.25205/2541-9447-2023-18-4-20-27
Abstract
An end-to-end simulation of the beam dynamics in the system of extraction, beam transportation and the first section of the accelerator (RFQ) is carried out. The proposed method of modeling the dynamics of ions from the source to the exit from the RFQ made it possible to quickly and efficiently change the parameters of the matching system depending on the final results of the beam passing into the RFQ. A system for matching a beam of negative hydrogen ions has been developed and optimized, which makes it possible to rotate the beam to block the propagation of cesium into the accelerator channel and to match the beam with RFQ. As a result of optimization of the matching channel, it is possible to obtain an emittance increase in RFQ of no more than 25 % for 90 % of the beam fraction, while the capture of beam particles in the acceleration mode is 98 % of the injected beam. The increased drifts in the matching system leave enough space for the placement of diagnostic equipment, a vacuum system and a beam correction system. The dependence of the beam dynamics in the RFQ on the charge distribution over the beam cross section at the output of the matching channel is established.
About the Authors
Yu. A. BudanovRussian Federation
Yury A. Budanov, Doctor of Physical and Mathematical Sciences, Head of the Laboratory
V. A. Kalinin
Russian Federation
VladimirA. Kalinin, Deputy Chief of the Accelerator Complex Department
B. A. Frolov
Russian Federation
Boris A. Frolov, Candidate of Physical and Mathematical Sciences, Leading Researcher
References
1. Klenov V. S., Frolov B. A. Numerical modeling of ion-optical systems of stretching, acceleration and matching with a radio-frequency quadrupole gas pedal for a beam of negative hydrogen ions. Technical Physics Journal, 2018, vol. 88, no. 5, pp. 649–654. (in Russ.)
2. Budanov Yu. A. et al. RFQ Drift-Tube Proton Linacs in IHEP. In Proc. 22th Linear Accelerator Conf. (LINAC’04). Lubeck, Germany, Aug. 2004, paper TUP01, pp. 285–287.
Review
For citations:
Budanov Yu.A., Kalinin V.A., Frolov B.A. Sequential Computer Simulation of H-minus Ion Dynamics from Source to RFQ Exit with Beam Rotation. SIBERIAN JOURNAL OF PHYSICS. 2023;18(4):20-27. (In Russ.) https://doi.org/10.25205/2541-9447-2023-18-4-20-27