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Gamma-rays from halos around stars and the Sun

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arxiv astro-ph/0607563 v3 pith:Y2XCARM6 submitted 2006-07-25 astro-ph

classification astro-ph
keywords starsemissioncomptoninversearoundbackgrounddetectablediffuse
verification ladder T0 review T1 audit T2 compute T3 formal
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Inverse Compton scattering by relativistic electrons produces a major component of the diffuse emission from the Galaxy. The photon fields involved are the cosmic microwave background and the interstellar radiation field from stars and dust. Calculations of the inverse Compton distribution have usually assumed a smooth ISRF, but in fact a large part of the Galactic luminosity comes from the most luminous stars which are rare. Therefore we expect the ISRF, and hence the inverse Compton emission, to be clumpy at some level which could be detectable by instruments such as GLAST. Even individual nearby luminous stars could be detectable assuming just the normal cosmic-ray electron spectrum. We present the basic formalism required and give possible candidate stars to be detected, and make predictions for GLAST. Then we apply the formalism to OB associations and the Sun, showing that the IC emission produced is not negligible compared to the sensitivity of current or coming detectors. We estimate that the gamma-ray flux from the halo around the Sun contributes to the diffuse background emission at about the few percent level.

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  1. A 3D Monte Carlo calculation of the inverse Compton emission from the Sun and stars in presence of magnetic and electric fields

    hep-ph 2025-05 conditional novelty 6.0 of 10

    A 3D Monte Carlo model of inverse Compton scattering that includes magnetic and electric fields predicts that the solar gamma-ray halo is brighter and more peaked toward the Sun than earlier line-of-sight calculations found.

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