Difference between revisions of "CeC Simulation Meeting"

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(Meeting Agenda)
(Meeting Agenda)
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* 09/07/2017:  
 
* 09/07/2017:  
** [[media:Meeting_09_07_2017_Jun.pdf|CeC simulations (Start to end simulation with reduced beam current, 40A->31A. The gain at ion is ~140. The optimal lattice functions at undulator are found with space charge effects taken into account.)]],  by Jun Ma;
+
** [[media:Meeting_09_07_2017_Jun.pdf|CeC simulations (Modulator and FEL simulation with reduced beam current, 40A->31A. The gain at ion is ~140. The optimal lattice functions at undulator are found with space charge effects taken into account.)]],  by Jun Ma;
 
* 08/31/2017:  
 
* 08/31/2017:  
** [[media:Meeting_08_31_2017_Jun.pdf|CeC simulations (Start to end simulation with not-so-matched beam at undulator entrance, beta functions are a factor of two larger. The intention is to see to what extent the beam has to be matched. Current is too large and FEL saturated)]],  by Jun Ma;
+
** [[media:Meeting_08_31_2017_Jun.pdf|CeC simulations (Modulator and FEL simulation with not-so-matched beam at undulator entrance, beta functions are a factor of two larger. The intention is to see to what extent the beam has to be matched. Current is too large and FEL saturated)]],  by Jun Ma;
 
* 08/17/2017:  
 
* 08/17/2017:  
 
** [[media:Meeting_08_17_2017_Jun.pdf|Quadrupoles (Attempts to optimize quadrupoles in modulator so that beam is matched to FEL. The target lattice function does not take into account space charge effects along undulator)]],  by Jun Ma;
 
** [[media:Meeting_08_17_2017_Jun.pdf|Quadrupoles (Attempts to optimize quadrupoles in modulator so that beam is matched to FEL. The target lattice function does not take into account space charge effects along undulator)]],  by Jun Ma;

Revision as of 16:39, 8 September 2017

Meeting Goals

The CeC simulation meeting is focused on developing simulation as well as analytical tools to advance understandings of coherent electron cooling (CeC).

Meeting Agenda