@inproceedings{6423e4ab7df146f2a76371d161e86287,
title = "Coupling modulator simulations into an fel amplifier for coherent electron cooling",
abstract = "Next-generation ion colliders will require effective cooling of high-energy hadron beams. Coherent electron cooling (CeC) can in principle cool relativistic hadron beams on orders-of-magnitude shorter time scales than other techniques [1]. Particle-in-cell (PIC) simulations of a CeC modulator with the parallel VORPAL framework generate macro-particle distributions with subtle but important phase space correlations. To couple these macro-particles into a 3D simulation code for the free-electron laser (FEL) amplifier, while retaining all details of the 6D phase space coordinates, we implemented an alternative approach based on particle-clone pairs [2]. Our approach allows for selfconsistent treatment of shot noise and spontaneous radiation, with no need for quiet-start initialization of the FEL macro-particles' ponderomotive phase. We present results of comparing fully 3D amplifier modeling based on the particle-clone approach vs GENESIS [3] simulations where distribution of bunching parameter was used as input.",
author = "Pogorelovy, \{I. V.\} and Bell, \{G. I.\} and Bruhwiler, \{D. L.\} and Schwartz, \{B. T.\} and Webb, \{S. D.\} and Litvinenko, \{V. N.\} and G. Wang and Y. Hao",
year = "2012",
language = "English",
isbn = "9783954501151",
series = "IPAC 2012 - International Particle Accelerator Conference 2012",
pages = "346--348",
booktitle = "IPAC 2012 - International Particle Accelerator Conference 2012",
note = "3rd International Particle Accelerator Conference 2012, IPAC 2012 ; Conference date: 20-05-2012 Through 25-05-2012",
}