3D mapping of optical turbulence using an atmospheric numerical model-I. a useful tool for the ground-based astronomy
E Masciadri, J Vernin, P Bougeault - Astronomy and Astrophysics …, 1999 - aas.aanda.org
E Masciadri, J Vernin, P Bougeault
Astronomy and Astrophysics Supplement Series, 1999•aas.aanda.orgThese last years have seen the development of many devices to measure and monitor some
atmospheric parameters characterizing the image degradation at the telescope focus. Many
uncertainties about the possibility to forecast such parameters are real although this skill is
fundamental for site testing, flexible scheduling and optimization of the performance of both
interferometry and adaptive optics. We present our atmospheric numerical model, conceived
to provide 3D maps of the classic meteorological parameters P, T and, and also 3D maps of …
atmospheric parameters characterizing the image degradation at the telescope focus. Many
uncertainties about the possibility to forecast such parameters are real although this skill is
fundamental for site testing, flexible scheduling and optimization of the performance of both
interferometry and adaptive optics. We present our atmospheric numerical model, conceived
to provide 3D maps of the classic meteorological parameters P, T and, and also 3D maps of …
These last years have seen the development of many devices to measure and monitor some atmospheric parameters characterizing the image degradation at the telescope focus. Many uncertainties about the possibility to forecast such parameters are real although this skill is fundamental for site testing, flexible scheduling and optimization of the performance of both interferometry and adaptive optics. We present our atmospheric numerical model, conceived to provide 3D maps of the classic meteorological parameters P, T and , and also 3D maps of the optical turbulent profiles. Knowing the wind and the profiles, the following integrated parameters are coded: seeing , coherence wavefront time , isoplanatic angle , scintillation rate and spatial coherence outer scale . The ability of the model to produce a 3D map of optical turbulence in the vicinity of a telescope and the effects of horizontal grid size are discussed. We demonstrate, for the same night, the global coherence of the different simulation outputs. Here we consider the use that this model could have in ground-based astronomy and we describe how it could be used to give a real forecast of the optical turbulence.
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