The Atmospheric Imaging Assembly in the Solar Dynamics Observatory provides full Sun images every 12 seconds in each of 7 Extreme Ultraviolet passbands. However, for a significant amount of these images, saturation affects their most intense core, preventing scientists from a full exploitation of their physical meaning. In this paper we describe a mathematical and automatic procedure for the recovery of information in the primary saturation region based on a correlation/inversion analysis of the diffraction pattern associated to the telescope observations. Further, we suggest an interpolation-based method for determining the image background that allows the recovery of information also in the region of secondary saturation (blooming).

Inverse diffraction for the Atmospheric Imaging Assembly in the Solar Dynamics Observatory

TORRE, GABRIELE;BENVENUTO, FEDERICO;Massone, A. M;PIANA, MICHELE
2015-01-01

Abstract

The Atmospheric Imaging Assembly in the Solar Dynamics Observatory provides full Sun images every 12 seconds in each of 7 Extreme Ultraviolet passbands. However, for a significant amount of these images, saturation affects their most intense core, preventing scientists from a full exploitation of their physical meaning. In this paper we describe a mathematical and automatic procedure for the recovery of information in the primary saturation region based on a correlation/inversion analysis of the diffraction pattern associated to the telescope observations. Further, we suggest an interpolation-based method for determining the image background that allows the recovery of information also in the region of secondary saturation (blooming).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/841002
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