Mineralogical Studies of a Highly O-17-Depleted and an O-17-Rich Presolar Grain from the Acfer 094 MeteoriteSilicate grains are the most abundant condensate around O-rich evolved stars, including red giants, supernovae (SNe) and binary systems. These grains have been identified in abundance in primitive meteorites and interplanetary dust particles [1,2]. Astronomical observations of the silicate spectroscopic features around circumstellar disks indicate that most silicates are amorphous olivine-like grains, though some sources show a large crystalline portion [3]. Fewer astronomical observations of SN and nova silicates exist, but amorphous Mg-rich grains predominate [4,5]. The laboratory analysis of presolar silicates by transmission electron microscopy (TEM) offers more details on the structure and chemistry of individual grains. These studies provide information on the physical and chemical conditions of the parent stellar atmosphere during grain condensation. Moreover, be-cause silicates are susceptible to secondary alteration, processing events succeeding condensation can be traced. Thus far, similar microstructures have been observed for silicates that condensed in SN outflows and in the envelopes of asymptotic giant branch (AGB) stars, but not as many of the comparatively rare SN grains have been analyzed. Here we examine the mineralogies of two presolar silicate grains having different origins.
Document ID
20120002892
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Nguyen, A. N. (Jacobs Technologies Engineering Science Contract Group Houston, TX, United States)
Keller, L. P. (NASA Johnson Space Center Houston, TX, United States)
Rahman, Z. (Jacobs Technologies Engineering Science Contract Group Houston, TX, United States)
Messenger, S. (NASA Johnson Space Center Houston, TX, United States)
Date Acquired
August 25, 2013
Publication Date
March 19, 2012
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
JSC-CN-25796Report Number: JSC-CN-25796
Meeting Information
Meeting: 43rd Lunar and Planetary Science Conference