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Processing Mechanisms for Interstellar Ices: Connections to the Solar SystemThe organic component of the interstellar medium, which has revealed itself through the ubiquitous 3.4 micrometers hydrocarbon absorption feature, is widespread throughout the disk of our galaxy and has been attributed to dust grains residing in the diffuse interstellar medium. The absorption band positions near 3.4 micrometers are characteristic of C-H stretching vibrations in the -CH3 and -CH2- groups of saturated aliphatic hydrocarbons associated with perturbing chemical groups. The production of complex molecules is thought to occur within dense molecular clouds when ice-mantled grains are processed by various energetic mechanisms. Studies of the processing of interstellar ices and the subsequent production of organic residues have relevance to studies of ices in the solar system, because primitive, icy solar system bodies such as those in the Kuiper belt are likely reservoirs of organic material, either preserved from the interstellar medium or produced in situ. Connections between the interstellar medium and the early solar nebula have long been a source of interest. A comparison of the interstellar organics and the Murchison meteorite illustrates the importance of probing the interstellar connection to the solar system, because although the carbonaceous meteorites are undoubtedly highly processed, they do retain specific interstellar signatures (such as diamonds, SiC grains, graphite and enriched D/H). The organic component, while not proven interstellar, has a remarkable similarity to the interstellar organics observed in over a dozen sightlines through our galaxy. This paper compares spectra from laboratory organics produced through the processing of interstellar ice analog materials with the high resolution infrared observations of the interstellar medium in order to investigate the mechanisms (such as ion bombardment, plasma processing, and UV photolysis) that may be producing the organics in the ISM.
Document ID
20020023610
Acquisition Source
Ames Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Pendleton, Y. J.
(NASA Ames Research Center Moffett Field, CA United States)
Cuzzi, Jeffrey N.
Date Acquired
August 20, 2013
Publication Date
January 1, 1995
Subject Category
Astrophysics
Meeting Information
Meeting: Ices in the Solar System
Location: Toulouse
Country: France
Start Date: March 27, 1995
End Date: March 30, 1995
Funding Number(s)
PROJECT: RTOP 185-52-12-09
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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