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Physics issues in diffraction limited storage ring design 被引量:3
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作者 FAN Wei BAI Zhenghe +4 位作者 GAO WeiWei FENG GuangYao LI WeiMin WANG Lin he duohui 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第5期802-807,共6页
Diffraction limited electron storage ring is considered a promising candidate for future light sources,whose main characteristics are higher brilliance,better transverse coherence and better stability.The challenge of... Diffraction limited electron storage ring is considered a promising candidate for future light sources,whose main characteristics are higher brilliance,better transverse coherence and better stability.The challenge of diffraction limited storage ring design is how to achieve the ultra low beam emittance with acceptable nonlinear performance.Effective linear and nonlinear parameter optimization methods based on Artificial Intelligence were developed for the storage ring physical design.As an example of application,partial physical design of HALS(Hefei Advanced Light Source),which is a diffraction limited VUV and soft X-ray light source,was introduced.Severe emittance growth due to the Intra Beam Scattering effect,which is the main obstacle to achieve ultra low emittance,was estimated quantitatively and possible cures were discussed.It is inspiring that better performance of diffraction limited storage ring can be achieved in principle with careful parameter optimization. 展开更多
关键词 diffraction limited storage ring lattice design dynamic aperture artificial intelligence intra beam scattering
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Design and cold test of S-BAND cavity BPM for HLS 被引量:1
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作者 LUO Qing SUN BaoGen +2 位作者 JIA QiKa he duohui FANG Jia 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第S2期292-295,共4页
An S-band cavity BPM is designed for a new injector in National Synchrotron Radiation Laboratory. A re-entrant position cavity is tuned to the TM110 mode as position cavity. Cut-through waveguides are used as pickups ... An S-band cavity BPM is designed for a new injector in National Synchrotron Radiation Laboratory. A re-entrant position cavity is tuned to the TM110 mode as position cavity. Cut-through waveguides are used as pickups to suppress the monopole signal. Theoretical resolution of this design is 31 nm. A prototype cavity BPM system is manufactured for off-line cold tests. The wire scanning method is used to calibrate the BPM and estimate the performance of the on-line BPM system. A cross-talk problem has been detected during the cold test. Racetrack cavity BPM design can be used to suppress the cross-talk. With the nonlinear effect being ignored, transform matrix can be used to correct cross-talk. Analysis of cold test results shows that the position resolution of prototype BPM is better than 3 μm. 展开更多
关键词 CAVITY BPM RE-ENTRANT cut-through waveguide cold test wire scanning resolution CROSS-TALK
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