Author: Sitnikov, A.
Paper Title Page
MOPSA04 The Tuning of RF Parameters of 40 MHz RFQ 139
 
  • A. Sitnikov, G. Kropachev, T. Kulevoy, D.N. Selesnev, A.I. Semennikov
    ITEP, Moscow, Russia
 
  The new linac for A/Z = 8, output energy 4 MeV/u and 10 mA current is under development at NRC "Kurchatov Institute" - ITEP. The linac consists of Radio-Frequency Quadrupole (RFQ) and two sections of Drift Tube Linac (DTL). The 40 MHz 11 meters long RFQ is based on a 4-vane structure with magnetic coupling windows. The paper presents results of tuning radio-frequency (RF) RFQ parameters.  
poster icon Poster MOPSA04 [1.243 MB]  
DOI • reference for this paper ※ doi:10.18429/JACoW-RuPAC2021-MOPSA04  
About • Received ※ 24 September 2021 — Revised ※ 25 September 2021 — Accepted ※ 07 October 2021 — Issued ※ 16 October 2021
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MOPSA05
Beam Dynamics in ITEP Heavy Ion Linac  
 
  • G. Kropachev
    JINR/FLNR, Moscow region, Russia
  • T. Kulevoy, A. Sitnikov
    ITEP, Moscow, Russia
 
  The pulse heavy ion linac accelerating ions with mass-to-charge ratio (A/Z) in the range 4 - 8 to energy 4 MeV per nucleon with a current of 10 mA is under development at ITEP. The linac including an RFQ section and two DTL sections (DTL1 and DTL2) operating at multiple frequencies is proposed. Each DTL section has a modular structure and consists of separated individually phased quarter-wave coaxial resonators (DTL1) and IH ones (DTL2) with focusing magnetic quadrupoles located between the cavities. This DTL structure provides linac compactness and enables its tuning and commissioning "cavity-by-cavity". A 6D-beam matching is carried out between all sections of the accelerator. The results of numerical simulation for particle dynamics are presented.  
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TUPSB50
The High Intensity Pulse Proton Linac for the Compact Neutron Source DARIA  
 
  • G. Kropachev
    JINR/FLNR, Moscow region, Russia
  • G. Kropachev, T. Kulevoy, A. Sitnikov
    ITEP, Moscow, Russia
 
  Funding: Work supported by RSF grant 19-12-00363
The 13 MeV 162.5 MHz 100 mA pulse proton linac is under development at ITEP. The linac with beryllium target will be used as the compact neutron generator in framework of DARIA project. The linac includes RFQ and DTL sections with 6D-beam matching between them. The DTL section has modular structure and consists of separated individually phased cavities with beam focusing by magnet quadrupoles located between the cavities. Results of beam dynamics simulation and RF parameters of linac cavities are presented.
 
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