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Obtaining high degree of circular polarization at x-ray free electron lasers via a reverse undulator taper

Authors :
E. A. Schneidmiller
M. V. Yurkov
Source :
Physical Review Special Topics. Accelerators and Beams, Vol 16, Iss 11, p 110702 (2013)
Publication Year :
2013
Publisher :
American Physical Society, 2013.

Abstract

Baseline design of a typical x-ray free electron laser (FEL) undulator assumes a planar configuration which results in a linear polarization of the FEL radiation. However, many experiments at x-ray FEL user facilities would profit from using a circularly polarized radiation. As a cheap upgrade, one can consider an installation of a short helical (or cross-planar) afterburner, but then one should have an efficient method to suppress the powerful linearly polarized background from the main undulator. In this paper we propose a new method for such a suppression: an application of the reverse taper in the main undulator. We discover that in a certain range of the taper strength, the density modulation (bunching) at saturation is practically the same as in the case of a nontapered undulator while the power of linearly polarized radiation is suppressed by orders of magnitude. Then strongly modulated electron beam radiates at full power in the afterburner. Considering the SASE3 undulator of the European XFEL as a practical example, we demonstrate that soft x-ray radiation pulses with peak power in excess of 100 GW and an ultimately high degree of circular polarization can be produced. The proposed method is rather universal, i.e., it can be used at SASE FELs and seeded (self-seeded) FELs, with any wavelength of interest, in a wide range of electron beam parameters, and with any repetition rate. It can be used at different x-ray FEL facilities, in particular at Linac Coherent Light Source after installation of the helical afterburner in the near future.

Details

Language :
English
ISSN :
10984402
Volume :
16
Issue :
11
Database :
Directory of Open Access Journals
Journal :
Physical Review Special Topics. Accelerators and Beams
Publication Type :
Academic Journal
Accession number :
edsdoj.8088b07be434a8cb59eb7c7b0ecdbf3
Document Type :
article
Full Text :
https://doi.org/10.1103/PhysRevSTAB.16.110702