Oxygen Isotopic Composition of Coarse- and Fine-grained Material from Comet 81P/Wild 2
Abstract
Individual particles from comet 81P/Wild 2 collected by NASA's Stardust mission vary in size from small sub-m fragments found in the walls of the aerogel tracks, to large fragments up to tens of m in size found towards the termini of tracks. The comet, in an orbit beyond Neptune since its formation, retains an intact a record of early-Solar-System processes that was compromised in asteroidal samples by heating and aqueous alteration. We measured the O isotopic composition of seven Stardust fragments larger than 2 m extracted from five different Stardust aerogel tracks, and 63 particles smaller than 2 m from the wall of a Stardust track. The larger particles show a relatively narrow range of O isotopic compositions that is consistent with O-poor phases commonly seen in meteorites. Many of the larger Stardust fragments studied so far have chondrule-like mineralogy which is consistent with formation in the inner Solar System. The fine-grained material shows a very broad range of O isotopic compositions (O) suggesting that Wild 2 fines are either primitive outer-nebula dust or a very diverse sampling of inner Solar System compositional reservoirs that accreted along with a large number of inner-Solar-System rocks to form comet Wild 2.
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Cite
@article{arxiv.1506.04783,
title = {Oxygen Isotopic Composition of Coarse- and Fine-grained Material from Comet 81P/Wild 2},
author = {Ryan C. Ogliore and Kazuhide Nagashima and Gary R. Huss and Andrew J. Westphal and Zack Gainsforth and Anna L. Butterworth},
journal= {arXiv preprint arXiv:1506.04783},
year = {2015}
}