Mathematics – Logic
Scientific paper
May 2006
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2006sptz.prop30421h&link_type=abstract
Spitzer Proposal ID #30421
Mathematics
Logic
Scientific paper
While long gamma-ray bursts (GRBs) have been conclusively demonstrated over the past nine years to be distributed at great cosmological distances, the nature of short and hard GRBs has yet to be definitively determined. An understanding of the origin of mysterious short gamma-ray bursts remains an elusive and exciting pursuit. A great leap forward was made this past year with the first rapid localizations and afterglow detection of such events, but follow-up has yet to reveal a detailed understanding of the progenitors and the nature of the afterglow light. We propose an ambitious multiwavelenth approach to the problem, leveraging Spitzer with Chandra as well as numerous ground- based telescopes. By measuring the broad-band spectrum of the afterglow and any concurrent "mini-supernova" over a wide range of wavelengths at several epochs, we can distinguish between models proposed to explain this type of burst. We will constrain the energetics of the explosion, the short GRB bursting rate (an important number for gravitational wave observatories), and measure with unprecedented detail the stellar content of a short burst host galaxy. Given the high impact nature of these observations and the rarity of short bursts, we are requesting multiepoch Target of Opportunity observations on a single event in Cycle 3. The wavelengths observed by Spitzer, when used in coordination with these other instruments, can make a crucial contribution to understanding the nature of short/hard GRBs, particularly by removing the degeneracies among the models due to dust extinction.
Alatalo Katherine
Bloom Joshua
Butler Nathaniel
Falco Emilio E.
Foley Ryan
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