Technical Project of the Ion Beam Diagnostics System in Phase Space
https://doi.org/10.25205/2541-9447-2023-18-4-44-53
Abstract
Increasing requirements for modern acceleration complexes require precise data on ion beams injected into the accelerator. This paper presents a system of ion beam diagnostics that implements the four-slit method and makes it possible to measure the beam current density distribution in the four-dimensional phase space (PS) with high precision. Technical solutions and design features aimed at obtaining the design parameters of the system are described: the range of investigated beam currents from 1 pA to 20 mA with energy up to 50 keV, spatial resolution from 6 mm to 50 μm.
About the Authors
A. S. FofanovRussian Federation
Andrey S. Fofanov, Research Engineer
I. V. Myasnikova
Russian Federation
Irina V. Myasnikova, Design Engineer
A. P. Klinov
Russian Federation
Alexandr P. Klinov, Lead Design Engineer
Yu. A. Shatalov
Russian Federation
Yuri A. Shatalov, Lead Engineer
V. A. Balakin
Russian Federation
Vladimir A. Balakin, Research Engineer
References
1. Osina Y. et al. Cyclotron of Multicharged Ions. Proceedings of the RuPAC2021. Alushta, Russiaб JACoW Publishing, Geneva, Switzerland, 2021, p. 3.
2. Zavyalov V. N. Electromagnetic mass-separator for isotopic enrichment of heavy actinoids. Realization of the STE project. JINR, 2021. (in Russ.)
3. Moskalev V. A., Sergeev G. I., Shestakov V. G. Diagnostics of charged particle beams. Moscow, Atomizdat Publ., 1973, 160 p. (in Russ.)
4. Steenbergen A. V. Evaluation of particle beam phase space measurement techniques. Nuclear Instruments and Methods, 1967, vol. 51, № 2, pp. 245–253.
5. Steenbergen A. V. AGS Preinjector Beam Emittance Area and Emittance Area Density Distribution Measurements. Proceedings of the 1962 Conference on Linear Accelerators for High Energies. Upton, New York, USA, 1962, pp. 338–380.
6. Wang M. et al. Design and Test Results of a Double-Slit Emittance Meter at XiPAF. Proceedings of the 7th Int. Beam Instrumentation Conf. Shanghai, China, 2019, vol. WEPC09, pp. 509–511.
7. Batalin V. A., Kuibida R. P., Sherman V. E. Measurements of beam emittance at the output of the linear gas pedal I-2. Institute of Theoretical and Experimental Physics ITEF-29, 1973, pp. 21. (in Russ.)
8. Harasimowicz J. et al. Beam diagnostics for low energy beams. Phys. Rev. ST Accel. Beams, 2012, vol. 15, № 12, pp. 122801.
9. Harasimowicz J., Welsch C. P. Faraday Cup for Low-Energy, Low-Intensity Beam Measurements at the USR. Santa Fe, New Mexico, USA, 2010, p. 3.
10. Minty M. G., Zimmermann F. Measurement and control of charged particle beams. Berlin; NY, Springer, 2003, 364 p.
Review
For citations:
Fofanov A.S., Myasnikova I.V., Klinov A.P., Shatalov Yu.A., Balakin V.A. Technical Project of the Ion Beam Diagnostics System in Phase Space. SIBERIAN JOURNAL OF PHYSICS. 2023;18(4):44-53. (In Russ.) https://doi.org/10.25205/2541-9447-2023-18-4-44-53