We study upgrade paths to significantly reduce the emittance of SPEAR3, a 3 GeV 3rd generation light source. The lattice potential is explored with global search techniques. Several candidate lattices are designed and studied in simulation and are implemented on the real machine. We employ genetic algorithms to optimize the nonlinear dynamics of the new lattices with various combinations of knobs. Plans for hardware upgrade for this project will be discussed.
黄小彪,1999年毕业于清华大学现代应用物理系,获理学学士(物理)和工学学士(计算机)学位,并被授予“清华大学优秀毕业生”奖章,2001年赴美国留学,2005年获印第安纳大学(Indiana University, Bloomington, IN)物理学博士学位,自2006年至今在美国斯坦福直线加速器中心(SLAC)斯坦福同步辐射光源(SSRL)担任研究员(staff scientist),从事加速器的理论,实验和设计工作。
Highlights of Xiaobiao Huang’s research
1. Leading the SPEAR3 emittance reduction study
2. Leading the SPEAR3 Top-off safety analysis
3. SPEAR3 nonlinear dynamics through experiments and modeling
4. Development of lattice calibration techniques
5. Studies for the PEP-X project
6. SPEAR3 lifetime measurement and analysis
7. Sychro-betatron coupling
8. Leading the development of SPEAR3 low-alpha operational mode
9. Measurement and modeling of Fermilab Booster emittance growth
10. Application of ICA to accelerators