DAFNE-Light is the Synchrotron Radiation Facility at the INFN-Frascati National Laboratory (Rome, Italy). Three beamlines are operational, using in parasitic and dedicated mode the intense photon emission of DAFNE, a 0.51 GeV storage ring with a routinely circulating electron current higher than 1 Ampere. Two of these beamlines - the soft xray (DXR1) and UV (DXR2) - use one of the DAFNE wiggler magnets as synchrotron radiation source, while the third beamline SINBAD (Synchrotron Infrared Beamline At DAFNE) collects the radiation from a bending magnet. New XUV bending magnet beamlines are nowadays under construction and the low energy one (35-200 eV) will be ready for commissioning by the end of 2009. A presentation of the facility will be given together with some recent scientific results achieved at SINBAD and DXR1 beamlines.
DAFNE-Light INFN-LNF Synchrotron Radiation Facility / Balerna, A.; Cestelli Guidi, M.; Cimino, R.; Commisso, M.; DE SIO, Antonio; Gambicorti, L.; Grilli, A.; Hampai, D.; Pace, Emanuele; Pietropaoli, M.; Raco, A.; Sciarra, V.; Tullio, V.; Viviani, G.. - STAMPA. - 1234:(2010), pp. 285-288. (Intervento presentato al convegno 10th International Conference on Radiation Instrumentation, AIP Conf. Proc. tenutosi a Melbourne (Australia) nel 27 Sep - 2 Oct 2009) [10.1063/1.3463191].
DAFNE-Light INFN-LNF Synchrotron Radiation Facility
DE SIO, ANTONIO;PACE, EMANUELE;
2010
Abstract
DAFNE-Light is the Synchrotron Radiation Facility at the INFN-Frascati National Laboratory (Rome, Italy). Three beamlines are operational, using in parasitic and dedicated mode the intense photon emission of DAFNE, a 0.51 GeV storage ring with a routinely circulating electron current higher than 1 Ampere. Two of these beamlines - the soft xray (DXR1) and UV (DXR2) - use one of the DAFNE wiggler magnets as synchrotron radiation source, while the third beamline SINBAD (Synchrotron Infrared Beamline At DAFNE) collects the radiation from a bending magnet. New XUV bending magnet beamlines are nowadays under construction and the low energy one (35-200 eV) will be ready for commissioning by the end of 2009. A presentation of the facility will be given together with some recent scientific results achieved at SINBAD and DXR1 beamlines.File | Dimensione | Formato | |
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