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The fiberless multislit spectrograph SFM
Authors:R Foy  A Baranne  C Bentolila  A Blazit  F-C Foy  R Leblondet  D Revest  F Tlévenin  E Thiébaut  Ch Thorn
Institution:(1) Observatoire de Lyon, CNRS URA 300, 69561 Saint-Genis-Laval cedex, France;(2) Laboratoire d'Optique, Observatoire de Marseille, CNRS URA 237, 2 Place Le Verrier, 13248 Marseille cedex 4, France;(3) Observatoire de Meudon, DASGAL, CNRS URA 335, 92195 Meudon cedex, France;(4) Département Fresnel, Observatoire de la Côte d'Azur, CNRS URA 1361, 06460 Caussols, France;(5) Département Cassini, Observatoire de la Côte d'Azur, CNRS URA 1362, P.O. Box 229, 06304 Nice cedex 4, France;(6) Institut Géographique National, LOEMI, P.O. Box 68, 94160 Saint-Mandé, France
Abstract:We describe the multislit spectrograph ldquoSFMrdquo. It is designed to obtain simultaneously spectrograms of faint objects over a field of 10 arcminutes for an entrance aperture ratio f/10, or of 15 arcmin for f/8. The SFM makes the dispersed image of the entrance slits directly, without any fiber optics. The number of entrance slits can be as large as a few hundreds, depending on the distribution of the sources on the sky and on the wavelength range. The present reciprocal dispersion is 79Åmm–1 in the wavelength range 3600 – 6400Å. The SFM is expected to reachm vap22 with a signal to noise ratio of 10 for a spectral resolution of 3.3Å and an integration time of 5 hours, when used with the photon counting detector CP40.Radial velocities can be measured either by using calibration spectrograms or by the objective prism technique.The mask of entrance slits is made photochemically from a plate previously recorded of the field to be observed, taken during the same observing run. The auxiliary equipment Mascograph, specially designed for this purpose, is described.First spectrograms in the field of M15 obtained with the SFM using the Calar-Alto 3.50m telescope are presented.Based on observations collected at the Calar-Alto 3.5m telescope, operated by the German MPIfA (Heidelberg), and at the 3.60m CFHT, operated jointly by the Canadian SRC, the French CNRS and the University of Hawaii
Keywords:Spectrograph  Multi-Object-Spectroscopy  M15
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