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Optimization on Synchrotron Radiation Lattice of BEPCII

Optimization on Synchrotron Radiation Lattice of BEPCII
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摘要 The Beijing Electron and Positron Collider II (BEPCII) is a double ring electron positron collider, which can also be used as a synchrotron radiation (SR) light source. Since the BEPCII will start commissioning with SR mode in November 2006, it is essential to have a satisfying SR lattice. Here we first perform frequency map analysis on the original BEPCII SR lattice. The result shows that the resonance is really severe in the lattice and the transverse motion of particles is unstable. Then a new SR lattice is designed to obtain a large dynamic aperture and much more stable transverse motion. The dynamic aperture of the new lattice including nonlinear wiggler effect is calculated to be very good. This new SR lattice can be used in the commissioning stage of the BEPCII. The Beijing Electron and Positron Collider II (BEPCII) is a double ring electron positron collider, which can also be used as a synchrotron radiation (SR) light source. Since the BEPCII will start commissioning with SR mode in November 2006, it is essential to have a satisfying SR lattice. Here we first perform frequency map analysis on the original BEPCII SR lattice. The result shows that the resonance is really severe in the lattice and the transverse motion of particles is unstable. Then a new SR lattice is designed to obtain a large dynamic aperture and much more stable transverse motion. The dynamic aperture of the new lattice including nonlinear wiggler effect is calculated to be very good. This new SR lattice can be used in the commissioning stage of the BEPCII.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第1期80-82,共3页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 10525525.
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参考文献6

  • 1Accelerator Center 2003 Design Report of BEPCII (Institute of High Energy Physics, Chinese Academy of Sciences)
  • 2CHEN L M 2003 BEPC 8th Annual Report p 81
  • 3Terebilo A 2001 SLAC-PUB 8732
  • 4Dumas S and Laskar J 1993 Phys. Rev. Lett. 70 2975
  • 5Grote H and Iselin C 1990 CERN/SL/90-13 (AP)
  • 6Guo J 2000 Nucl. Instrum. Methods A 451 545

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