SINBAD (Synchrotron Infrared Beamline At DANE) is the first Italian synchrotron radiation beamline operating in the infrared range. It collects the radiation emitted by DANE, an electron-positron collider designed to work at 0.51 GeV with a beam current I > 1 A. Here, the actual performances of the beamline, in terms of brilliance gain with respect to black bodies and polarization properties, are presented and discussed. Finally, the stability of the SINBAD source, a critical issue for Fourier transform infrared spectroscopy, is discussed.

CESTELLI GUIDI, M., Piccinini, M., Marcelli, A., Nucara, A., Calvani, P., Burattini, E. (2005). Optical performances of SINBAD, the Synchrotron INfrared Beamline At DANE. 22, J) CESTELLI GUIDI, M., PICCININI, M., MARCELLI, A., NUCARA, A., CALVANI, P., BURATTINI. E.,. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA, A 22, 2810-2817.

Optical performances of SINBAD, the Synchrotron INfrared Beamline At DANE. 22, J) CESTELLI GUIDI, M., PICCININI, M., MARCELLI, A., NUCARA, A., CALVANI, P., BURATTINI. E.,

PICCININI, MASSIMO;
2005-01-01

Abstract

SINBAD (Synchrotron Infrared Beamline At DANE) is the first Italian synchrotron radiation beamline operating in the infrared range. It collects the radiation emitted by DANE, an electron-positron collider designed to work at 0.51 GeV with a beam current I > 1 A. Here, the actual performances of the beamline, in terms of brilliance gain with respect to black bodies and polarization properties, are presented and discussed. Finally, the stability of the SINBAD source, a critical issue for Fourier transform infrared spectroscopy, is discussed.
2005
CESTELLI GUIDI, M., Piccinini, M., Marcelli, A., Nucara, A., Calvani, P., Burattini, E. (2005). Optical performances of SINBAD, the Synchrotron INfrared Beamline At DANE. 22, J) CESTELLI GUIDI, M., PICCININI, M., MARCELLI, A., NUCARA, A., CALVANI, P., BURATTINI. E.,. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA, A 22, 2810-2817.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/269951
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