Dating deformation: the role of atomic-scale processes

被引:7
|
作者
Villa, Igor M.
机构
[1] Institut für Geologie, Universität Bern, Baltzerstrasse 3, Bern
[2] Centro Universitario Datazioni e Archeometria, Università di Milano Bicocca, Piazza della Scienza 4, Milano
关键词
U-PB; EQUILIBRIUM THERMODYNAMICS; TEMPERATURE METAMORPHISM; K-AR; MONAZITE; ZIRCON; PROBE; AGE; GEOCHRONOLOGY; DIFFUSION;
D O I
10.1144/jgs2021-098
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Dating deformation is difficult, as textures and petrogenesis of deformed rocks are complex. Moreover, geochronometer categories are pursued by communities that often do not communicate. Hygrochronology dates the retrograde metasomatic/metamorphic reactions caused by aqueous fluid circulation events. Thermochronology models time-temperature histories by assuming that mineral ages can be uniquely assigned to a 'closure temperature T-c', the only process occurring in rocks being Fick's Law diffusion. Diffusion by definition produces a bell-shaped concentration profile. In contrast, patchy intra-grain isotope concentration profiles denounce aqueous retrogression, whose rate is orders of magnitude faster than diffusion. Petrochronology is based on opposite assumptions, as the mobility of structure-forming major cations is higher than that of radiogenic Pb, Ar, and Sr. Whenever the formation of a mineral occurs at T < T-c, its apparent age dates its formation. Nanochronology analyses samples at the nanometre-scale. These analyses illuminate atomic-scale processes, e.g. open-system transport of soluble ions along self-sealing networks of nanopores. The key to dating deformation and producing correct, regional-sized (up to hundreds of kilometres) tectonic models is the realization that minerals consist of atoms, whose behaviour is only firmly constrained by nanometre-scale analyses.
引用
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页数:7
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