Cherchneff, Isabelle. (2009) Primordial Massive Supernovae as Molecular Factories at High Redshifts. In: Cosmic Dust - Near and Far, 414. p. 36.
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Official URL: http://edoc.unibas.ch/51268/
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Abstract
New chemical models of primordial massive supernova (PMSN) ejecta based on a chemical kinetic approach are presented. We focus on the formation of molecules including gas phase dust precursors, and consider Population IIII zero-metallicity progenitors. Results for fully-mixed ejecta are presented for various progenitor masses. Large amounts of molecules in PMSN ejecta form at times as early as 250 days after explosion. Upper limits of dust mass are derived and compared to dust masses derived from existing studies of dust condensation in primordial SN ejecta. The present values are always lower whatever the type of mixing and the formed dust precursors imply different solid chemical compositions within the ejecta. We conclude that PMSNe are efficient molecular providers to the early universe, ejecting up to ˜25% of their progenitor mass under molecular form to the pristine, local gas.
Faculties and Departments: | 05 Faculty of Science > Departement Physik > Physik |
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UniBasel Contributors: | Cherchneff-Parrinello, Isabelle |
Item Type: | Conference or Workshop Item, refereed |
Conference or workshop item Subtype: | Conference Paper |
Publisher: | Astronomical Society of the Pacific |
ISBN: | 978-1-58381-708-7 |
e-ISBN: | 978-1-58381-709-4 |
Series Name: | Astronomical Society of the Pacific Conference Series |
ISSN: | 1050-3390 |
Note: | Publication type according to Uni Basel Research Database: Conference paper |
Last Modified: | 15 Mar 2017 09:34 |
Deposited On: | 15 Mar 2017 09:33 |
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