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Tunability experiments at the FERMI@Elettra free-electron laser

Authors :
E Allaria
A Battistoni
F Bencivenga
R Borghes
C Callegari
F Capotondi
D Castronovo
P Cinquegrana
D Cocco
M Coreno
P Craievich
R Cucini
F D'Amico
M B Danailov
A Demidovich
G De Ninno
A Di Cicco
S Di Fonzo
M Di Fraia
S Di Mitri
B Diviacco
W M Fawley
E Ferrari
A Filipponi
L Froehlich
A Gessini
E Giangrisostomi
L Giannessi
D Giuressi
C Grazioli
R Gunnella
R Ivanov
B Mahieu
N Mahne
C Masciovecchio
I P Nikolov
G Passos
E Pedersoli
G Penco
E Principi
L Raimondi
R Sergo
P Sigalotti
C Spezzani
C Svetina
M Trovò
M Zangrando
Source :
New Journal of Physics, Vol 14, Iss 11, p 113009 (2012)
Publication Year :
2012
Publisher :
IOP Publishing, 2012.

Abstract

FERMI@Elettra is a free electron-laser (FEL)-based user facility that, after two years of commissioning, started preliminary users' dedicated runs in 2011. At variance with other FEL user facilities, FERMI@Elettra has been designed to deliver improved spectral stability and longitudinal coherence. The adopted scheme, which uses an external laser to initiate the FEL process, has been demonstrated to be capable of generating FEL pulses close to the Fourier transform limit. We report on the first instance of FEL wavelength tuning, both in a narrow and in a large spectral range (fine- and coarse-tuning). We also report on two different experiments that have been performed exploiting such FEL tuning. We used fine-tuning to scan across the 1s–4p resonance in He atoms, at ≈23.74 eV (52.2 nm), detecting both UV–visible fluorescence (4p–2s, 400 nm) and EUV fluorescence (4p–1s, 52.2 nm). We used coarse-tuning to scan the M _4,5 absorption edge of Ge (∼29.5 eV) in the wavelength region 30–60 nm, measured in transmission geometry with a thermopile positioned on the rear side of a Ge thin foil.

Subjects

Subjects :
Science
Physics
QC1-999

Details

Language :
English
ISSN :
13672630
Volume :
14
Issue :
11
Database :
Directory of Open Access Journals
Journal :
New Journal of Physics
Publication Type :
Academic Journal
Accession number :
edsdoj.967c60e91e74debabe75f0d4de4c4a8
Document Type :
article
Full Text :
https://doi.org/10.1088/1367-2630/14/11/113009