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"Osiris"(HD209458b), an evaporating planet

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arxiv astro-ph/0312382 v1 pith:6SBG6UAK submitted 2003-12-15 astro-ph

classification astro-ph
keywords planetevaporatingatomsescapeexplainhd209458bhydrogenname
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Three transits of the planet orbiting the solar type star HD209458 were observed in the far UV at the wavelength of the HI Ly-alpha line. The planet size at this wavelength is equal to 4.3 R_Jup, i.e. larger than the planet Roche radius (3.6 R_Jup). Absorbing hydrogen atoms were found to be blueshifted by up to -130 km/s, exceeding the planet escape velocity. This implies that hydrogen atoms are escaping this ``hot Jupiter'' planet. An escape flux of >~ 10^10g/s is needed to explain the observations. Taking into account the tidal forces and the temperature rise expected in the upper atmosphere, theoretical evaluations are in good agreement with the observed rate. Lifetime of planets closer to their star could be shorter than stellar lifetimes suggesting that this evaporating phenomenon may explain the lack of planets with very short orbital distance. This evaporating planet could be represented by the Egyptian God ``Osiris'' cut into pieces and having lost one of them. This would give us a much easier way to name that planet and replace the unpleasant ``HD209458b'' name used so far.

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  1. Searching for helium escape and a low density atmosphere around the 120 Myr old sub-Neptune HIP94235b using CRIRES+

    astro-ph.EP 2025-06 conditional novelty 4.0 of 10

    HIP94235b shows no detectable helium escape (mass loss below 10^11 g/s) and no detectable water absorption in two CRIRES+ transits, implying it likely lacks a large hydrogen-helium envelope.

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