The transport of water in subduction zones
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
http://link.springer.com/content/pdf/10.1007/s11430-015-5258-4.pdf
Reference254 articles.
1. Abbott D, Drury R, Smith W H F. 1994. Flat to steep transition in subduction style. Geology, 22: 937–940
2. Abers G A, van Keken P E, Kneller E A, Ferris A, Stachni J C. 2006. The thermal structure of subduction zones constrained by seismic imaging: Implications for slab dehydration and wedge flow. Earth Planet Sci Lett, 241: 387–397.
3. Akaogi M, Akimoto S I. 1980. High-pressure stability of a dense hydrous magnesian silicate Mg23Si8O42H6 and some geophysical implications. J Geophys Res, 85: 6944–6948
4. Alonso-Perez R, Muentener O, Ulmer P. 2009. Igneous garnet and amphibole fractionation in the roots of island arcs: Experimental constraints on andesitic liquids. Contrib Mineral Petrol, 157: 541–558
5. Anderson R N, Uyeda S, Miyashiro A. 1976. Geophysical and geochemical constraints at converging plate boundaries—Part I: Dehydration in the downgoing slab. Geophys J Int, 44: 333–357
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