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Communication Dans Un Congrès Année : 2005

Application of a multidimensional wavelet denoising algorithm for the detection and characterization of astrophysical sources of gamma rays

Résumé

Zhang, Fadili, & Starck have recently developed a denoising procedure for Poisson data that offers advantages over other methods of intensity estimation in multiple dimensions. Their procedure, which is nonparametric, is based on thresholding wavelet coefficients. The restoration algorithm applied after thresholding provides good conservation of source flux. We present an investigation of the procedure of Zhang et al. for the detection and characterization of astrophysical sources of high-energy gamma rays, using realistic simulated observations with the Large Area Telescope (LAT). The LAT is to be launched in late 2007 on the Gamma-ray Large Area Space Telescope mission. Source detection in the LAT data is complicated by the low fluxes of point sources relative to the diffuse celestial background, the limited angular resolution, and the tremendous variation of that resolution with energy (from tens of degrees at 30 MeV to 0.1◦ at 10 GeV). The algorithm is very fast relative to traditional likelihood model fitting, and permits immediate estimation of spectral properties. Astrophysical sources of gamma rays, especially active galaxies, are typically quite variable, and our current work may lead to a reliable method to quickly characterize the flaring properties of newly-detected sources.
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Dates et versions

hal-00261082 , version 1 (06-03-2008)

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  • HAL Id : hal-00261082 , version 1

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S.W. Digel, B. Zhang, J. Chiang, Jalal M. Fadili, Jean-Luc Starck. Application of a multidimensional wavelet denoising algorithm for the detection and characterization of astrophysical sources of gamma rays. Phystat 05, 2005, -, United States. ⟨hal-00261082⟩
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