• Title of article

    Design of hybrid electron linac with standing wave buncher and traveling wave structure

  • Author/Authors

    Kutsaev، نويسنده , , S.V. and Sobenin، نويسنده , , N.P. and Smirnov، نويسنده , , A.Yu. and Kamenschikov، نويسنده , , D.S. and Gusarova، نويسنده , , M.A. and Nikolskiy، نويسنده , , K.I. and Zavadtsev، نويسنده , , A.A. and Lalayan، نويسنده , , M.V.، نويسنده ,

  • Pages
    18
  • From page
    13
  • To page
    30
  • Abstract
    A disk-loaded waveguide (DLW) is the most common structure for compact linear accelerators working in a traveling wave (TW) regime. Among its advantages are high shunt impedance and manufacturing simplicity. The other popular structure is an on-axis coupled bi-periodical accelerating structure (BAS) that works in standing wave (SW) regime. Both the standing and the traveling wave regimes have their own advantages and disadvantages. The design of the hybrid accelerator with SW buncher and TW accelerating section presented in this paper unites the advantages of both regimes. For example, the buncher in the hybrid accelerator is shorter than in a pure TW accelerator, and it requires no solenoid; this structure is more technologically convenient as it does not require a circulator. her way to combine the advantages of DLW and BAS is to design a magnetic coupled disk-loaded waveguide (DLW-M). This paper also presents the results of a survey study that analyzed the electrodynamical parameters of such a structure and compared them with those of DLW. The experimental data is also presented. Higher order modes, multipacting discharge and thermal simulations show that DLW-M structure is more preferable to classical DLW.
  • Keywords
    Multipacting discharge , Electron linac , Input coupler , traveling wave , Beam Dynamics , Disk-loaded waveguide , Hybrid accelerator , standing wave , Biperiodic structure , Higher order modes
  • Journal title
    Astroparticle Physics
  • Record number

    2016307