DocumentCode :
2968967
Title :
Towards multiscale reconstruction of perturbated phase from Hartmann-Shack acquisitions
Author :
Maji, Suman Kumar ; Yahia, Hussein ; Pont, Oriol ; Sudre, Joel ; Fusco, Thierry ; Michau, Vincent
fYear :
2012
fDate :
25-28 June 2012
Firstpage :
77
Lastpage :
84
Abstract :
Atmospheric turbulence perturbates to a great extent the optical path of incoming light from outer space thereby limiting the resolution power of capturing devices. One of the most common techniques used in astronomical imaging to compensate for this perturbation is Adaptive Optics (AO). In this paper we explore the potential of Microcanonical Multiscale Formalism (MMF) for the reconstruction of the perturbated wavefront, from the low-resolution acquisition of the turbulent phase by a Hartmann-Shack wavefront sensor used in AO. In fact, turbulent flows, although chaotic in nature, are characterised by scale hierarchy and develop cascade like structures where transfer of energy takes place from one scale to the other. We make use of MMF to infer properties along the scales of the complex signal consisting of optical phase perturbation and perform reconstruction using an appropriate wavelet decomposition associated to the cascading properties of the turbulent flow.
Keywords :
adaptive optics; atmospheric optics; atmospheric turbulence; geophysical fluid dynamics; image reconstruction; wavefront sensors; AO; Adaptive Optics; Hartmann-Shack acquisitions; Hartmann-Shack wavefront sensor; MMF; Microcanonical Multiscale Formalism; astronomical imaging; atmospheric turbulence; capturing devices; cascade-like structures; incoming light; low-resolution acquisition; multiscale reconstruction; optical path; optical phase perturbation; outer space; perturbated phase; perturbated wavefront; scale hierarchy; turbulent flows; turbulent phase; wavelet decomposition; Image reconstruction; Image resolution; Mathematical model; Signal resolution; Signal to noise ratio; Wavelet analysis; Wavelet transforms; adaptive optics; cascade processes; inverse problem; microcanonical multiscale formalism; phase reconstruction; wavelets;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Adaptive Hardware and Systems (AHS), 2012 NASA/ESA Conference on
Conference_Location :
Erlangen
Print_ISBN :
978-1-4673-1915-7
Electronic_ISBN :
978-1-4673-1914-0
Type :
conf
DOI :
10.1109/AHS.2012.6268633
Filename :
6268633
Link To Document :
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