Radiaxial-fibrous and fascicular-optic Mg-calcitic cave cements: A characterization using electron backscattered diffraction (EBSD)

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Abstract

Electron backscattered diffraction (EBSD) applied to crystal fabric research in speleothems aids in our understanding of the origin of those fabrics. A significant advantage of this approach is the three dimensional data set of crystal c-axes. Here, we show a rare case of both convergent (radiaxial-fibrous) and divergent (fascicular-optic) orientations of the c-axes in pool calcites. The seemingly defective structure of the calcite lattice resulting in radiaxial-fibrous crystal orientations is probably caused by differential incorporation of Mg during crystal growth. The observation that radiaxial-fibrous and fascicular-optic fabrics co-exist in the same pool environment is remarkable and documents the complexity of the system.

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Richter, D. K., Immenhauser, A., Neuser, R. D., & Mangini, A. (2015). Radiaxial-fibrous and fascicular-optic Mg-calcitic cave cements: A characterization using electron backscattered diffraction (EBSD). International Journal of Speleology, 44(1), 91–98. https://doi.org/10.5038/1827-806X.44.1.8

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