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Hydrogen Molecules in SN 1987AThe observations of CO and SiO in the infrared spectrum of SN 1987A clearly indicate that molecules can form in the debris of a supernova explosion. Since H2 is not easily observable we compute its abundance theoretically. For conditions typical of the inner (v less than 2500 km/s) envelope of SN 1987A, the fraction of H that is in molecular form rises to approx. 1% by t approx. 800 days. For t less than 500 days the formation is dominated by the gas-phase reactions H + H(+) yields H2(+) + hv; H2(+) + H yields H2 + H(+). Thereafter, the formation is dominated by the reactions H + e yields H(-) + hv; H(-) + H yields H2 + e. At early times the H(-) may absorb approx. 10%-30% of visible photons, contributing to the apparent paucity of H alpha emission. For t greater than 1000 days the abundance of H2 'freezes out' due to the slowing of all reactions. The opacity of the supernova envelope in the range 912 less than lambda less than or approx. equal to 1400 A (the upper limit depending on temperature) is dominated by resonance scattering in the Lyman and Werner bands of H2. The resulting fluorescence emission bands of H2 in the range 1150 less than lambda less than 1650 A may be observable in the UV spectra of supernovae at late times.
Document ID
19970028845
Acquisition Source
Headquarters
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Culhane, Michael
(Joint Inst. for Lab. Astrophysics Boulder, CO United States)
McCray, Richard
(Joint Inst. for Lab. Astrophysics Boulder, CO United States)
Date Acquired
September 6, 2013
Publication Date
December 10, 1995
Publication Information
Publication: The Astrophysical Journal
Publisher: The American Astronomical Society
Volume: 455
Subject Category
Astronomy
Report/Patent Number
NASA-CR-205308
NAS 1.26:205308
Report Number: NASA-CR-205308
Report Number: NAS 1.26:205308
Accession Number
97N27568
Funding Number(s)
CONTRACT_GRANT: NAGw-2900
CONTRACT_GRANT: NAGw-766
Distribution Limits
Public
Copyright
Public Use Permitted.
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