• DocumentCode
    2896343
  • Title

    A low emittance lattice design for hls storage ring

  • Author

    Wang, Lin ; Liu, Zuping ; Li, Weimin ; Feng, Guangyao ; Zhang, Shancai ; Xu, Hongliang

  • Author_Institution
    USTC, Hefei
  • fYear
    2007
  • fDate
    25-29 June 2007
  • Firstpage
    1064
  • Lastpage
    1066
  • Abstract
    Reducing beam emittance is the most effective measure to enhance brilliance of light source. HLS (Hefei light source) is a second generation synchrotron light source, whose emittance is relatively large. To improve the performance of HLS, a new low emittance lattice, whose circumference is similar to that of current storage ring but the focusing structure was different, was studied and presented in this paper. The new ring can be set upon current ground settlement of HLS, while all magnets would be reconstructed. The new designed lattice has two operation modes, the low emittance mode, whose purpose is to reduce beam emittance and to increase the number of straight section, and the low momentum compaction mode, whose purpose is to adjust bunch length for the production of coherent THz radiation. After optimization, beam emittance was reduced to several nmmiddotrad, and the dynamic aperture for on-momentum and off-momentum particle is large enough. It is conceivable that, with the new lattice, the brilliance of HLS should be increased two orders.
  • Keywords
    accelerator magnets; light sources; particle beam dynamics; particle beam focusing; particle beam injection; storage rings; submillimetre waves; synchrotron radiation; HLS storage ring; Hefei light source; beam dynamic aperture; beam emittance; coherent THz radiation; focusing structure; injection system; momentum compaction mode; off-momentum particle; on-momentum particle; optimization; quadrupole magnet; synchrotron radiation; Apertures; Compaction; High level synthesis; Lattices; Light sources; Magnets; Particle beams; Production; Storage rings; Synchrotrons;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Particle Accelerator Conference, 2007. PAC. IEEE
  • Conference_Location
    Albuquerque, NM
  • Print_ISBN
    978-1-4244-0916-7
  • Type

    conf

  • DOI
    10.1109/PAC.2007.4440983
  • Filename
    4440983