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From Stars to Planets Gainesville 14 April 2007 Short-lived radioisotopes: A cosmochemical connection between star and planet formation Eric Gaidos 1,3 Jonathan Williams 2,3 Nick Moskovitz 2 Daniel Rogerrs 4 1 Department of Geology & Geophysics 2 Institute for Astronomy 3 NASA Astrobiology Institute 4 Department of Physics & Astronomy University of Hawaii at Manoa Launch of COROT
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From Stars to Planets Gainesville 14 April 2007 Armstrong et al. (1984) Evidence for live 26 Al in the early Solar System
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From Stars to Planets Gainesville 14 April 2007 Markowski et al. (2006) Early (<2 Myr) differentiation of some meteorite parent bodies
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From Stars to Planets Gainesville 14 April 2007 Evidence for the homogeneity of 26 Al Thrane et al. (2006)
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From Stars to Planets Gainesville 14 April 2007 Bizzarro et al. (2006) Absence of 60 Fe in iron meteorite parent bodies?
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From Stars to Planets Gainesville 14 April 2007 Contribution to 26 Al by Wolf-Rayet winds
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From Stars to Planets Gainesville 14 April 2007 Meynet & Maeder (2005) 26 Al 60 Fe
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From Stars to Planets Gainesville 14 April 2007 Overlapping time scales Half life of 26 Al0.72 Myr Massive star lifetime>3 Myr Protostar and disk lifetime1-5 Myr Cluster dispersal time1-10 Myr Accretion time scale1-10 Myr
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From Stars to Planets Gainesville 14 April 2007 N-body simulations of a 9000-star cluster containing a 60 solar-mass (O3) star and ~270 solar mass (0.9-1.1) stars t = 0 t = 3 Myr
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From Stars to Planets Gainesville 14 April 2007 Williams & Gaidos, in prep. N = 9000
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From Stars to Planets Gainesville 14 April 2007
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Cumulative distribution of relative 26 Al inventories 0.1X 10X 1X
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From Stars to Planets Gainesville 14 April 2007 Thermal histories of 3-km planetesimals with Solar, 0.1X, and 10X 26 Al
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From Stars to Planets Gainesville 14 April 2007
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Leger et al. (2004) Less dehydration: Ocean worlds?
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From Stars to Planets Gainesville 14 April 2007 Disk injection scenario Single O3 (60 solar-mass star) in 500 star cluster Plummer sphere with specified core radius and virial parameter ≥0.5 reflecting gas loss (Bastian & Goodwin 2006) Simulation stopped at 3.8 Myr Yield of 26 Al in wind from Limongi & Chieffi (2006) Injection efficiency of 100%; no decay during time of flight Mass fraction of 26 Al calculated according to Looney et al. (2006): time of flight of ejecta injection efficiency mass of isotope in ejecta distance from SS to progenitor surface density of SS solar system value; 26 Al/ 27 Al = 5.85 × 10 -5
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From Stars to Planets Gainesville 14 April 2007 g = 0.5 g = 0.9
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From Stars to Planets Gainesville 14 April 2007 Denizens of a low 26 Al world....
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