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A Combined Atomic-Resolution STEM and First-Principles Approach Towards Understanding the Origins of the First Solar-System Solids

Published online by Cambridge University Press:  04 August 2017

T.J. Zega
Affiliation:
Lunar and Planetary Laboratory, University of Arizona, Tucson, U.S.A. Dept. of Materials Science and Engineering, University of Arizona, Tucson, U.S.A.
V. Manga
Affiliation:
Lunar and Planetary Laboratory, University of Arizona, Tucson, U.S.A. Dept. of Materials Science and Engineering, University of Arizona, Tucson, U.S.A.
K. Watanabe
Affiliation:
Hitachi High Technologies Inc., Hitachinaka, Japan
K. Domanik
Affiliation:
Lunar and Planetary Laboratory, University of Arizona, Tucson, U.S.A.
P. Mane
Affiliation:
Lunar and Planetary Laboratory, University of Arizona, Tucson, U.S.A.
A. Hanawa
Affiliation:
Hitachi High Technologies Inc., Hitachinaka, Japan
H. Inada
Affiliation:
Hitachi High Technologies Inc., Hitachinaka, Japan
J.Y. Howe
Affiliation:
Hitachi High Technologies America Inc., Clarksburg, U.S.A.
K. Muralidharan
Affiliation:
Dept. of Materials Science and Engineering, University of Arizona, Tucson, U.S.A.

Abstract

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Type
Abstract
Copyright
© Microscopy Society of America 2017 

References

[1] Connelly, J. N., et al., Science 338 2012). p. 651655.CrossRefGoogle Scholar
[2] Lodders, K. (2003). Astrophys. J 591, 12201247.CrossRefGoogle Scholar
[3] Zega, T. J., et al, Meteoritics & Planet. Sci 42 2007 13731386.Google Scholar
[4] We thank Jose Jimenez for install and setup of the HF5000 at the University of Arizona. Research supported by the UA Office of Research, Discovery, and Innovation in conjunction with NSF grant 1531243 and NASA grants NNX15AJ22G and NNX12AL47G..Google Scholar