期刊文献+

CSRm随机冷却初步设计

Primary Design of Stochastic Cooling in CSRm
原文传递
导出
摘要 根据实际情况对兰州重离子加速器冷却储存环主环随机冷却做了初步设计和优化,用冷却方程对主环随机冷却做了详细的数值模拟计算.研究表明,随机冷却对主环束流冷却速度很快,冷却效果很好.通过对电子冷却和随机冷却的比较,提出主环的束流冷却采用电子冷却和随机冷却相结合的办法,这样可以加快冷却速度,得到更高流强、更好品质的束流. Based on several facts of CSRm, such as the layout of the ring, the lattice parameters, exiting Schottky noise diagnosis equipment and fund, the primary stochastic cooling design of CSRm has been carried out. The optimum cooling time and the optimum cooling bandwidth are obtained through simulation using the cooling function. The results indicate that the stochastic cooling is quite a powerful cooling method for CSRm. The comparison of the cooling effects of stochastic cooling and electron cooling in CSR are also presented. We can conclude that the combination of the two cooling methods on CSRm will improve the beam cooling rate and quality beam greatly.
出处 《高能物理与核物理》 EI CSCD 北大核心 2006年第8期797-801,共5页 High Energy Physics and Nuclear Physics
基金 国家杰出青年科学基金(10325522)资助~~
关键词 随机冷却 冷却率 冷却时间 stochastic cooling, cooling rate, cooling time
  • 相关文献

参考文献10

  • 1XIA J W, ZHAN W L, WEI B W et al. Nucl. Instrum.Methods, 2002, A488:11
  • 2Bonssard D. Schottky Noise and Beam Transfer Function Diagnostics: CERN-95-06. 1995. 749
  • 3Caspers F. Techniques of Stochastic Cooling: CERN-PS-2001-017-RF. 2001. 16
  • 4Goldberg D A, Lambertson G R. AIP Conf. Proc. 1992,249:537
  • 5Marriner John. Theory, Technology and Technique of Stochastic Cooling: FERMILAB-Conf-93. 308
  • 6Mohl D. CERN Report, 1995, 95-06:587
  • 7Mohl D. Nucl. Instrum. Methods, 1997, A391:164-171
  • 8Goldberg D A, Lambertson G R. Coping with Power-limited Transverse Stochastic Cooling Systems: LBL-25924, 1989
  • 9武军霞,夏佳文,杨建成,刘伟,殷学军,刘勇.HIRFL-CSRm纵向随机冷却——Palmer冷却研究[J].高能物理与核物理,2004,28(4):437-440. 被引量:1
  • 10武军霞,夏佳文,杨建成,刘伟,殷学军,刘勇.HIRFL-CSRm纵向随机冷却-槽形滤波冷却模拟研究[J].强激光与粒子束,2004,16(1):125-128. 被引量:1

二级参考文献11

  • 1Xia J W, Zhan W L,Wei B W,etal. The heavy ion cooler-storage-ring project (HIRFL-CSR) at Lanzhou[J]. Nucl Instrum Meth. 2002,A488: 11-25.
  • 2Mohl D. Stochastic cooling[R]. CERN Report[C]. 1995,95-06:587-664.
  • 3Marriner J. Theory, technology and technique of stochastic cooling[A]. FERMILAB-Conf-93[C]. 308.
  • 4Katayama T, Tokuda N. Fokker-Planck approach to stochastic momentum cooling with a notch filter[J]. Particle Accelerators, 1987,21:99.
  • 5Mohl D. The status of stochastic cooling[J]. Nucl Instrum Meth ,1997,A391:164-171.
  • 6XIA J W,ZHAN W L,WEI B W et al.Nucl.Instrum.Methods,2002,A488:11
  • 7Mohl D.CERN Report,1995,95-06:587
  • 8Marriner John.Theory,Technology and Technique of Stochastic Cooling.FERMILAB-Conf-93/308
  • 9Mohl D.Nucl.Instrum.Methods,1997,A391:164
  • 10Goldberg D A,Lambertson G R.COPING WITH POWER-LIMITED TRANSVERSE STOCHASTIC COOLING SYSTEMS.Prepared for IEEE Particle Accelerator Conference,Chicago,IL,20-23 Mar.1989.In Chicago 1989,Accelerator Science and Technology,1:642-644

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部