F. Martin
University of Nice Sophia Antipolis
35 Papers
213 Citations
F. Martin is an academic researcher from University of Nice Sophia Antipolis. The author has contributed to research in topics: Speckle imaging & Angular resolution. The author has an hindex of 12, co-authored 35 publications.
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Papers
Site testing in summer at Dome C, Antarctica
Eric Aristidi,Abdelkrim Agabi,Eric Fossat,M. Azouit,F. Martin,T. Sadibekova,Tony Travouillon,Jean Vernin,Aziz Ziad +8 more
TL;DR: In this article, the authors present summer site testing results based on DIMM data obtained at Dome C, Antarctica during two 3-month summer campaigns in 2003-2004 and 2004-2005.
Effect of a finite spatial-coherence outer scale on the covariances of angle-of-arrival fluctuations
TL;DR: In this article, the transverse and longitudinal covariances of the angle-of-arrival fluctuations are theoretically calculated, taking into account the effect of a finite outer scale for the spatial coherence of the wavefronts perturbed by the atmospheric turbulence described successively by the Kolmogorov-Tatarski model and the Von Karman model.
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Temporal characterization of atmospheric turbulence with the Generalized Seeing Monitor instrument
TL;DR: In this article, the temporal evolution of the main atmospheric optical parameters (AOP) have been studied in order to determine their stability, which is of interest because these AOP are necessary for the optimization of high angular resolution techniques.
30
First results of the PML monitor of atmospheric turbulence profile with high vertical resolution
Aziz Ziad,Flavien Blary,Julien Borgnino,Y. Fantei-Caujolle,Eric Aristidi,F. Martin,H. Lantéri,R. Douet,E. Bondoux,D. Mekarnia +9 more
TL;DR: In this article, a new monitor called Profiler of Moon Limb (PML) is presented for the extraction of the C 2 N (h) profile with high vertical resolution and its first results are presented.
Measurements of profiles of the wavefront outer scale using observations of the limb of the Moon
TL;DR: In this article, the vertical distribution of the wavefront outer scale was estimated using a simulated annealing algorithm to estimate the height dependence of the outer scale with given C 2 N profiles simultaneously measured with the scintillation detection and ranging (SCIDAR) instrument.