@inproceedings{eaaf8e2ad2ce4534a2915cffc5f2b78f,
title = "Simulation of phase shifters between FEL amplifiers in coherent electron cooling",
abstract = "Coherent electron Cooling (CeC) [1] is a proposed advanced beam cooling method that has the potential of reducing the ion beam emittance insignificantly shorter amount of time compared to existing cooling methods. A high gain FEL, composed of three permanent magnet helical wigglers, is acting as an amplifier of the ion's signals picked up by electron beam in CeC. A self-consistent simulation which takes the space and possible phase shifts between wigglers into account is crucial in determining the performance of the FEL. The authors developed an algorithm based on the well-used GENESIS [2] code to treat the propagation of particles and radiations in between wigglers and predicted the FEL performance with different beamline layouts. The authors will present their simulation setup and results.",
author = "Yichao Jing and Litvinenko, \{Vladimir N.\} and Igor Pinayev",
note = "Publisher Copyright: {\textcopyright} Proceedings of the 38th International Free-Electron Laser Conference, FEL 2017. All rights reserved.; 38th International Free-Electron Laser Conference, FEL 2017 ; Conference date: 20-08-2017 Through 25-08-2017",
year = "2017",
doi = "10.18429/JACoW-FEL2017-TUP072",
language = "English",
series = "Proceedings of the 38th International Free-Electron Laser Conference, FEL 2017",
publisher = "JACoW Publishing",
pages = "386--388",
editor = "Kip Bishofberger and Carlsten Bruce and Schaa, \{Volker RW\}",
booktitle = "Proceedings of the 38th International Free-Electron Laser Conference, FEL 2017",
}