The combination of high spatial and spectral resolution in optical astronomy enables new observational approaches to many open problems in stellar and circumstellar astrophysics. However, constructing a high-resolution spectrograph for an interferometer is a costly and time-intensive undertaking. Our aim is to show that, by coupling existing high-resolution spectrographs to existing interferometers, one could observe in the domain of high spectral and spatial resolution, and avoid the construction of a new complex and expensive instrument. We investigate in this article the different challenges which arise from combining an interferometer with a high-resolution spectrograph. The requirements for the different sub-systems are determined, with special attention given to the problems of fringe tracking and dispersion. A concept study for the combination of the VLTI (Very Large Telescope Interferometer) with UVES (UV-Visual Echelle Spectrograph) is carried out, and several other specific instrument pairings are discussed. We show that the proposed combination of an interferometer with a high-resolution spectrograph is indeed feasible with current technology, for a fraction of the cost of building a whole new spectrograph. The impact on the existing instruments and their ongoing programs would be minimal.
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Nord Opt Telescope, Roque Los Muchachos Observ, La Palma 38711, Canarias, SpainNord Opt Telescope, Roque Los Muchachos Observ, La Palma 38711, Canarias, Spain
Telting, J. H.
Avila, G.
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European So Observ, Photon & Opt Grp, Garching, GermanyNord Opt Telescope, Roque Los Muchachos Observ, La Palma 38711, Canarias, Spain
Avila, G.
Buchhave, L.
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Univ Copenhagen, Niels Bohr Inst, DK-1168 Copenhagen, DenmarkNord Opt Telescope, Roque Los Muchachos Observ, La Palma 38711, Canarias, Spain