6 Design and Principles of Synchrotrons and Circular Colliders
293
164. J. Bosser et al., “Experimental investigation of electron cooling and stacking of lead ions in a
low-energy accumulation ring,” Part. Acc., vol. 63, p. 171, 1999.
165. G. Tranquille, “Optimum parameters for electron cooling,” CERN, Geneva, 2001.
166. J. Bosser et al., “Stability of cooled beams,” Nucl. Instrum. Methods Phys. Res. A, vol. 441,
pp. 1-8, 2000.
167. S. Nagaitsev et al., “Antiproton cooling in the Fermilab Recycler Ring,” in International
Workshop on Beam Cooling and Related Topics (COOL05), 2005.
168. A. V. Fedotov, “Progress of high-energy electron cooling for RHIC,” in International
Workshop on Beam Cooling and Related Topics (COOL07), Bad Kreuznach, 2007.
169. D. Reistad, “Calculations on high-energy electron cooling in the HESR,” in International
Workshop on Beam Cooling and Related Topics (COOL07), Bad Kreuznach, 2007.
170. I. Ben-Zvi, “R&D towards cooling of the RHIC Collider,” Nucl. Instrum. Meth. A, vol. 532,
pp. 177-183, 2004.
171. Y. Derbenev, “Coherent electron cooling,” Phys. Rev. Lett., vol. 102, p. 114801, 2009.
172. W. Petrich et al., “Laser cooling at the Heidelberg Test Storage Ring (TSR),” in Workshop on
Electron Cooling and new Cooling Techniques, Legnaro, 1990.
173. N. Kjærgaard et al., “Recent results from laser cooling experiments in ASTRID – real-time
imaging of ion beams,” Nucl. Instrum. Meth. A, vol. 441, p. 196, 2000.
174. E. Bonderup, “Laser cooling,” in CAS - CERN Accelerator School: 5th Advanced Accelerator
Physics Course, Rhodes, Greece, 20 Sep - 1 Oct 1993, Vols. CERN Report 95-06, S. Turner,
Ed., Rhodes, CERN, 1993, pp. 731-747.
175. H. J. Miesner et al., “Efficient, indirect transverse laser cooling of a fast stored ion beam,”
Phys. Rev. Let., vol. 77, p. 623, 1996.
176. I. Lauer et al., “Transverse laser cooling of a fast stored ion beam through dispersive
coupling,” Phys.Rev. Lett., vol. 81, p. 2052, 1998.
177. H. Okamoto, A. M. Sessler and D. Möhl, “ Three-Dimensional laser cooling of stored and
circulating ion beams by means of a coupling cavity,” Phys. Rev. Lett., vol. 72, p. 3977, 1994.
178. D. Maletic and A. Ruggiero, “Crystalline beams and related issues,” in 31st INFN Eloisatron
Workshop, Erice, 1996.
179. D. Habs and R. Grimm, “Crystalline Ion Beams,” Ann. Rev. Nucl. Sci., vol. 45, pp. 391-428,
1995.
180. N. Madsen and J. S. Nielsen, “Laser-cooling for light ion accumulation,” in 7th European
Particle Accelerator Conference (EPAC 2000), Vienna, 2000.
181. G. Plass, “The status of the HIDIF study,” Nucl. Instrum. Meth. A, vol. 415, p. 204, 1998.
182. A. Noda et al., “Present status and recent activity on laser cooling at S-LSR,” in International
Workshop On Beam Cooling And Related Topics (COOL07), Bad Kreuznach, 2007.
183. A. Noda et al., “Laser cooling for 3-D crystalline state at S-LSR,” in International Workshop
on Beam Cooling and Related Topics (COOL05), 2005.
184. M. Ikegami et al., “Heavy ion storage ring without linear dispersion,” Phys. Rev. Accel.
Beams, vol. 7, p. 120101, 2004.
185. A. N. Skrinsky, “Ionization cooling and muon collider,” Nucl. Instrum. Meth. A, vol. 391, pp.
188-195, 1997.
186. D. N. D. Neuffer, “Introduction to muon cooling,” Nucl. Instrum. Meth. A, vol. 532, pp. 26-31,
2004.
187. D. Kaplan, “Muon-cooling research and development,” Nucl. Instrum. Meth. A, vol. 532, pp.
241-248, 2004.
188. A. Blondel and G. Hanson, “MICE status report September 2010,” 2010.
189. W. M. Itano et al., “Cooling methods in ion traps,” Phys. Scr., vol. T59, pp. 106-120, 1995.
190. F. Herfurth et al., “Highly charged ions at rest: The HITRAP project at GSI,” Wako, 2005.
191. N. Beverini et al., “Stochastic cooling in Penning traps,” Phys. Rev. A, vol. 38, no. 1, pp.
107-114, 1988.
192. D. S. Hall and G. Gabrielse, “Electron cooling of protons in a nested Penning trap,” Phys.
Rev. Lett., vol. 77, no. 10, p. 1962, 1997.
293
164. J. Bosser et al., “Experimental investigation of electron cooling and stacking of lead ions in a
low-energy accumulation ring,” Part. Acc., vol. 63, p. 171, 1999.
165. G. Tranquille, “Optimum parameters for electron cooling,” CERN, Geneva, 2001.
166. J. Bosser et al., “Stability of cooled beams,” Nucl. Instrum. Methods Phys. Res. A, vol. 441,
pp. 1-8, 2000.
167. S. Nagaitsev et al., “Antiproton cooling in the Fermilab Recycler Ring,” in International
Workshop on Beam Cooling and Related Topics (COOL05), 2005.
168. A. V. Fedotov, “Progress of high-energy electron cooling for RHIC,” in International
Workshop on Beam Cooling and Related Topics (COOL07), Bad Kreuznach, 2007.
169. D. Reistad, “Calculations on high-energy electron cooling in the HESR,” in International
Workshop on Beam Cooling and Related Topics (COOL07), Bad Kreuznach, 2007.
170. I. Ben-Zvi, “R&D towards cooling of the RHIC Collider,” Nucl. Instrum. Meth. A, vol. 532,
pp. 177-183, 2004.
171. Y. Derbenev, “Coherent electron cooling,” Phys. Rev. Lett., vol. 102, p. 114801, 2009.
172. W. Petrich et al., “Laser cooling at the Heidelberg Test Storage Ring (TSR),” in Workshop on
Electron Cooling and new Cooling Techniques, Legnaro, 1990.
173. N. Kjærgaard et al., “Recent results from laser cooling experiments in ASTRID – real-time
imaging of ion beams,” Nucl. Instrum. Meth. A, vol. 441, p. 196, 2000.
174. E. Bonderup, “Laser cooling,” in CAS - CERN Accelerator School: 5th Advanced Accelerator
Physics Course, Rhodes, Greece, 20 Sep - 1 Oct 1993, Vols. CERN Report 95-06, S. Turner,
Ed., Rhodes, CERN, 1993, pp. 731-747.
175. H. J. Miesner et al., “Efficient, indirect transverse laser cooling of a fast stored ion beam,”
Phys. Rev. Let., vol. 77, p. 623, 1996.
176. I. Lauer et al., “Transverse laser cooling of a fast stored ion beam through dispersive
coupling,” Phys.Rev. Lett., vol. 81, p. 2052, 1998.
177. H. Okamoto, A. M. Sessler and D. Möhl, “ Three-Dimensional laser cooling of stored and
circulating ion beams by means of a coupling cavity,” Phys. Rev. Lett., vol. 72, p. 3977, 1994.
178. D. Maletic and A. Ruggiero, “Crystalline beams and related issues,” in 31st INFN Eloisatron
Workshop, Erice, 1996.
179. D. Habs and R. Grimm, “Crystalline Ion Beams,” Ann. Rev. Nucl. Sci., vol. 45, pp. 391-428,
1995.
180. N. Madsen and J. S. Nielsen, “Laser-cooling for light ion accumulation,” in 7th European
Particle Accelerator Conference (EPAC 2000), Vienna, 2000.
181. G. Plass, “The status of the HIDIF study,” Nucl. Instrum. Meth. A, vol. 415, p. 204, 1998.
182. A. Noda et al., “Present status and recent activity on laser cooling at S-LSR,” in International
Workshop On Beam Cooling And Related Topics (COOL07), Bad Kreuznach, 2007.
183. A. Noda et al., “Laser cooling for 3-D crystalline state at S-LSR,” in International Workshop
on Beam Cooling and Related Topics (COOL05), 2005.
184. M. Ikegami et al., “Heavy ion storage ring without linear dispersion,” Phys. Rev. Accel.
Beams, vol. 7, p. 120101, 2004.
185. A. N. Skrinsky, “Ionization cooling and muon collider,” Nucl. Instrum. Meth. A, vol. 391, pp.
188-195, 1997.
186. D. N. D. Neuffer, “Introduction to muon cooling,” Nucl. Instrum. Meth. A, vol. 532, pp. 26-31,
2004.
187. D. Kaplan, “Muon-cooling research and development,” Nucl. Instrum. Meth. A, vol. 532, pp.
241-248, 2004.
188. A. Blondel and G. Hanson, “MICE status report September 2010,” 2010.
189. W. M. Itano et al., “Cooling methods in ion traps,” Phys. Scr., vol. T59, pp. 106-120, 1995.
190. F. Herfurth et al., “Highly charged ions at rest: The HITRAP project at GSI,” Wako, 2005.
191. N. Beverini et al., “Stochastic cooling in Penning traps,” Phys. Rev. A, vol. 38, no. 1, pp.
107-114, 1988.
192. D. S. Hall and G. Gabrielse, “Electron cooling of protons in a nested Penning trap,” Phys.
Rev. Lett., vol. 77, no. 10, p. 1962, 1997.
