Title of article :
Fluid-assisted fracturing, cataclasis, and resulting plastic flow in mylonites from the Moresby Seamount detachment, Woodlark Basin
Author/Authors :
Speckbacher، نويسنده , , Romed and Stipp، نويسنده , , Michael and Behrmann، نويسنده , , Jan H. and Heidelbach، نويسنده , , Florian، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
16
From page :
156
To page :
171
Abstract :
The Moresby Seamount detachment (MSD) in the Woodlark Basin (offshore Papua New Guinea) is a large active low-angle detachment excellently exposed at the seafloor, and cutting through mafic metamorphic rocks. Hydrothermal infiltration of quartz followed by that of calcite occurred during cataclastic deformation. Subsequent deformation of these a priori softer minerals leads to mylonite formation in the MSD. This study aims at a better understanding of the deformation mechanism switch from cataclastic to plastic flow. Deformation fabrics of the fault rocks were analyzed by light-optical microscopy. Rheologically critical phases were mapped to determine distributions and area proportions, and EBSD was used to measure crystallographic preferred orientation (CPO). Strong calcite CPOs indicate dominant dislocation creep. Quartz CPOs, however, are weak and more difficult to interpret, suggesting at least some strain accommodation by diffusion creep mechanisms. When quartz aggregates are intermixed with the polymineralic mylonite matrix diffusion creep grain boundary sliding may be dominant. The syntectonic conversion from mafic cataclasites to more siliceous and carbonaceous mylonites induced by hydrothermal processes is a critical weakening mechanism enabling the MSD to at least intermittently plastic flow at low shear stresses. This is probably a crucial process for the operation of low-angle detachments in hydrated and dominantly mafic crust.
Keywords :
diffusion creep , Interconnected layering , Low-angle detachment , quartz , Hydrothermal infiltration , calcite , Dislocation creep , Polymineralic matrix
Journal title :
Journal of Structural Geology
Serial Year :
2013
Journal title :
Journal of Structural Geology
Record number :
2227869
Link To Document :
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