Olivine Exit Interviews—Piecing Together Magmatic Puzzles

Author:

Ruprecht Philipp1,Welsch Benoît2

Affiliation:

1. University of Nevada, Reno Department of Geological Sciences and Engineering, 1664 N. Virginia Street, Reno, NV 89557-0172, USA

2. Macalester College, Geology Department, 1600 Grand Avenue, Saint Paul, MN 55105-1899, USA

Abstract

When magmas erupt at the surface, they may have undergone many changes since their inception. While olivine drives some of these changes through crystallization and fractionation, it also records the magma evolution via mineral chemistry and by trapping mineral and melt inclusions. Olivine is an effective recorder of intensive parameters, such as temperature and melt composition, and provides an outstanding petrological tool for constraining dynamic processes, such as ascent, mixing, and cooling. Olivine sheds light on magmatic puzzles that involve both mafic and more evolved magmas, with protracted and complex magmatic histories that often obscure earlier and deeper processes. This contribution summarizes the current state of how olivine helps reconstruct source-to-surface magma assembly through its chemistry, inclusions, and textures.

Publisher

Mineralogical Society of America

Subject

Earth and Planetary Sciences (miscellaneous),Geochemistry and Petrology

Reference30 articles.

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