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  4. A modular end-station for atomic, molecular, and cluster science at the Low Density Matter beamline of FERMI@Elettra
 
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research article

A modular end-station for atomic, molecular, and cluster science at the Low Density Matter beamline of FERMI@Elettra

Lyamayev, Victor
•
Ovcharenko, Yevheniy
•
Katzy, Raphael
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2013
Journal of Physics B : atomic and molecular physics

The Low Density Matter end-station at the new seeded Free Electron Laser FERMI@Elettra is a versatile instrument for the study of atoms, molecules and clusters by means of electron and ion spectroscopies. Beams of atoms, molecules and helium droplets as well as clusters of atoms, molecules and metals can be produced by three different pulsed valves. The atomic and molecular beams may be seeded, and the clusters and droplets may be pure, or doped with other atoms and molecules. The electrons and ions produced by the ionization and fragmentation of the samples by the intense light of FERMI can be analyzed by the available spectrometers, to give mass spectra and energy as well as angular distributions of charged particles. The design of the detector allows simultaneous detection of electrons and ions using Velocity Map Imaging and Time-of-Flight techniques respectively. The instruments have a high energy/mass resolution and large solid-angle collection efficiency. We describe the current status of the apparatus and illustrate the potential for future experiments.

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Type
research article
DOI
10.1088/0953-4075/46/16/164007
Web of Science ID

WOS:000323113100008

Author(s)
Lyamayev, Victor
•
Ovcharenko, Yevheniy
•
Katzy, Raphael
•
Devetta, Michele
•
Bruder, Lukas
•
LaForge, Aaron
•
Mudrich, Marcel
•
Person, Ulrich
•
Stienkemeier, Frank
•
Krikunova, Maria
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Date Issued

2013

Publisher

Iop Publishing Ltd

Published in
Journal of Physics B : atomic and molecular physics
Volume

46

Article Number

16400

Subjects

free electron laser

•

gas phase samples

•

electron spectroscopy

Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LCPM  
Available on Infoscience
March 22, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/90513
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