Garnet in pelitic schists from a quartz-eclogite unit of the southern Dora-Maira massif, Western Alps

Citation
N. Matsumoto et T. Hirajima, Garnet in pelitic schists from a quartz-eclogite unit of the southern Dora-Maira massif, Western Alps, SCHWEIZ MIN, 80(1), 2000, pp. 53-62
Citations number
24
Categorie Soggetti
Earth Sciences
Journal title
SCHWEIZERISCHE MINERALOGISCHE UND PETROGRAPHISCHE MITTEILUNGEN
ISSN journal
00367699 → ACNP
Volume
80
Issue
1
Year of publication
2000
Pages
53 - 62
Database
ISI
SICI code
0036-7699(2000)80:1<53:GIPSFA>2.0.ZU;2-O
Abstract
On the basis of grain size distribution, chemical zoning patterns and the n ature of inclusions, two types of garnet are recognized in pelitic schists from a quartz-eclogite unit of the southern Dora-Maira massif, 1) an Alpine -stage gar net, and 2) a multi-stage (Alpine and pre Alpine) garnet. Garnet , associated with chloritoid, paragonite, albite, phengite and quartz, occu rs either as porphyroblasts with unimodal grain size distribution or as lar ge and small grains with bimodal distribution. Porphyroblastic garnet commo nly contains chloritoid inclusions throughout the grain, and has a concentr ic chemical zoning pattern with Mn decreasing and Ca increasing from core t o rim. This suggests that the garnet grew during a single high-pressure met amorphic event, i.e., the high-pressure Alpine stage. The cores of the larg er garnets show various zoning patterns. The rims of such garnets are Ca-ri ch and Mn-poor. Some grains have a clear chemical discontinuity between the core and rim. Chloritoid inclusions in such garnets are only found in the chemically distinct rims. The smaller garnets contain chloritoid throughout the grain and the composition is similar to that of the rim of the larger garnets. This suggests that the chemically distinct rim overgrew a pre-Alpi ne garnet relict during the high-pressure Alpine stage: the larger garnet r ecords a multi-stage growth history. This is direct evidence for polymetamo rphism of the quartz-eclogite unit in the Dora-Maira massif.