Difference between revisions of "Electron Cooling"

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* More detailed discussion can be found in International Committee for Future Accelerators Beam Dynamics Newsletter
 
* More detailed discussion can be found in International Committee for Future Accelerators Beam Dynamics Newsletter
 
: Beam Cooling I [[media:icfa_bd_nl_64.pdf]]
 
: Beam Cooling I [[media:icfa_bd_nl_64.pdf]]
: Beam Cooling II [[media:]icfa_bd_nl_65.pdf]
+
: Beam Cooling II [[media:icfa_bd_nl_65.pdf]]
  
  

Revision as of 08:19, 13 April 2015

General Review

media:Beam_cooling-Steck.pdf
media:Beam_cooling-Steck.ppt
  • More detailed discussion can be found in International Committee for Future Accelerators Beam Dynamics Newsletter
Beam Cooling I media:icfa_bd_nl_64.pdf
Beam Cooling II media:icfa_bd_nl_65.pdf



References

  • Continuous electron cooling for high-luminosity colliders

A. Skrinsky, Nucl. Instrum. Meth. A 441, 286 (2000) [1] media:NuclInstrumMethA.441.286.pdf

  • High-energy electron cooling in a collider

A. V. Fedotov et al., New J. Phys. 8, 283 (2006) [2] media:NewJPhys.8.283.pdf

  • Cooling of High-Energy Hadron Beams

M. Blaskiewicz, Annual Review of Nuclear and Particle Science 64, 299 (2014) [3] media:annurev-nucl-102313-025427.pdf



Electron Cooling at BNL

  • Various aspects of electron cooling R&D and projects are discussed here: [4]



Electron Cooling at FNAL

  • Experimental Demonstration of Relativistic Electron Cooling

S. Nagaitsev et al., Phys. Rev. Lett. 96, 044801 (2006) [5] media:PhysRevLett.96.044801.pdf



BETACOOL Home Page at JINR

  • BETACOOL [6] was developed as a program for simulation of particle dynamics in ion storage rings under the action of electron cooling force.