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TUCBMH02 |
Status of the 2.5 MeV Electron Cooling System for NICA Collider |
35 |
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- V.V. Parkhomchuk, M.I. Bryzgunov, A.V. Bubley, A.P. Denisov, A.D. Goncharov, N.S. Kremnev, V.M. Panasyuk, A.A. Putmakov, V.B. Reva, D.N. Skorobogatov
BINP SB RAS, Novosibirsk, Russia
- V.B. Reva
NSU, Novosibirsk, Russia
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Status of the development of the 2.5 MV electron cooling system for the NICA collider is reported. The goal of the system is to cool both ion beams during experiment. Cooling of beams during collision prevents grows of beam emittance by compensation of heating effects (intra-beam scattering, beam-beam effects etc.) that increases luminosity of the NICA collider. The system consists of two independent electron coolers in order to meet the requirement of cooling of two independent beams. Each cooler contains high voltage system, transport channels and cooling section. Construction of main parts of the cooling system, results of testing of some prototypes and status of production are described in the article.
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Slides TUCBMH02 [18.497 MB]
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-RUPAC2018-TUCBMH02
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TUPSA07 |
Calculation of Injection Efficiency to Damping Ring of VEPP-5 Injection Complex |
155 |
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- K.V. Astrelina, F.A. Emanov, N.S. Kremnev
BINP SB RAS, Novosibirsk, Russia
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VEPP-5 Injection Complex (IC) is electron and positron beam source for VEPP-4 and VEPP-2000 experimental facilities. IC consists of Preinjector - the system of two linear accelerators and conversion target, and Damping Ring where particle beams are collected before extraction to the users. One of the factors that determine the performance of IC is the number of positrons which can be transported from Preinjector to Damping Ring and stored to the stable orbit. Estimations of the maximum efficiency of beam generation include the beam loss calculations in the transport line between linear accelerator and ring and analysis of the injected beam capture in the storage ring. Results of calculations are presented in the report.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-RUPAC2018-TUPSA07
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Export • |
reference for this paper using
※ BibTeX,
※ LaTeX,
※ Text/Word,
※ RIS,
※ EndNote (xml)
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