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Variations in orientation relationships between rutile inclusions and garnet host relate to magmatic growth zoning

Victoria Kohn; Thomas A. Griffiths; Taisia Alifirova; Nina Daneu; Olga Ageeva; Rainer Abart; Gerlinde Habler
Contributions to Mineralogy and Petrology · Vol. 179, Issue 7 · 2024

Abstract

Rutile inclusions in almandine-spessartine garnet from a peraluminous pegmatoid from the Moldanubian zone (Bohemian Massif, AT) show distinct changes in aspect ratio, shape preferred orientations (SPO) and crystallographic orientation relationships (COR) along the transition between microstructurally different growth zones in the garnet core and rim. For identification of the COR characteristics we pool specific CORs based on their common axial relationship into three COR groups: Group 103 R /111 G , Group 001 R /111 G and Group 001 R /100 G . The rutile inclusions in the garnet core domains are elongated along the four Grt $$\langle$$ ⟨ 111 $$\rangle$$ ⟩ directions and are dominated by COR Group 103 R /111 G . The garnet rim zone additionally contains rutile needles elongated along Grt $$\langle$$ ⟨ 100 $$\rangle$$ ⟩ . Here, Group 001 R /111 G and 001 R /100 G are more abundant than in the garnet core. Needle-shaped rutile in the rim shows a systematic correlation between SPOs and CORs as needles elongated parallel to Grt $$\langle$$ ⟨ 111 $$\rangle$$ ⟩ are dominated by Group 103 R /111 G and 001 R /111 G , whereas those needles elongated parallel to Grt $$\langle$$ ⟨ 100 $$\rangle$$ ⟩ exclusively pertain to CORs of 001 R /100 G . Furthermore, the frequency of each particular SPO in the garnet rim clearly depends on the local growth direction of the particular Grt{112} sector. Facet-specific variations in rutile SPO frequencies in different sectors and growth zones of garnet were observed even between equivalent directions, indicating that the microstructures and textures of rutile inclusions reflect varying parameters of garnet growth. The characteristic differences in COR groups of different garnet growth zones are referred to compositional changes in the bulk melt or compositional boundary layer, associated with magmatic fractional crystallisation.

Bibliographic Information

JournalContributions to Mineralogy and Petrology
PublisherSpringer
Publication Date2024-07-01
Publication Year2024
Volume179
Issue7
Document TypeJournal Article
Print ISSN0010-7999
eISSN1432-0967
DOI10.1007/s00410-024-02146-9

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Journal Homepagehttps://www.springer.com/journal/410
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