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Optical microscope-cathodoluminescence (OM–CL) imaging as a powerful tool to reveal internal textures of minerals
by
Kempe, Ulf
, Hanchar, John M.
, Schertl, Hans-Peter
, Götze, Jens
, Neuser, Rolf D.
in
Alterations
/ Earth and Environmental Science
/ Earth Sciences
/ Emission measurements
/ Geochemistry
/ Imaging
/ Inorganic Chemistry
/ Luminescence
/ Mathematical analysis
/ Microscopy
/ Mineralogy
/ Minerals
/ Original Paper
/ Reconstruction
/ Surface layer
/ Texture
/ Trace elements
2013
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Optical microscope-cathodoluminescence (OM–CL) imaging as a powerful tool to reveal internal textures of minerals
by
Kempe, Ulf
, Hanchar, John M.
, Schertl, Hans-Peter
, Götze, Jens
, Neuser, Rolf D.
in
Alterations
/ Earth and Environmental Science
/ Earth Sciences
/ Emission measurements
/ Geochemistry
/ Imaging
/ Inorganic Chemistry
/ Luminescence
/ Mathematical analysis
/ Microscopy
/ Mineralogy
/ Minerals
/ Original Paper
/ Reconstruction
/ Surface layer
/ Texture
/ Trace elements
2013
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Do you wish to request the book?
Optical microscope-cathodoluminescence (OM–CL) imaging as a powerful tool to reveal internal textures of minerals
by
Kempe, Ulf
, Hanchar, John M.
, Schertl, Hans-Peter
, Götze, Jens
, Neuser, Rolf D.
in
Alterations
/ Earth and Environmental Science
/ Earth Sciences
/ Emission measurements
/ Geochemistry
/ Imaging
/ Inorganic Chemistry
/ Luminescence
/ Mathematical analysis
/ Microscopy
/ Mineralogy
/ Minerals
/ Original Paper
/ Reconstruction
/ Surface layer
/ Texture
/ Trace elements
2013
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Optical microscope-cathodoluminescence (OM–CL) imaging as a powerful tool to reveal internal textures of minerals
Journal Article
Optical microscope-cathodoluminescence (OM–CL) imaging as a powerful tool to reveal internal textures of minerals
2013
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Overview
Optical microscope-cathodoluminescence (OM-CL) microscopy is a modern luminescence technique with widespread applications in geosciences. Many rock-forming and accessory minerals show specific CL properties that can be successfully used in geoscience and materials science research. One of the most spectacular applications is the visualization of growth textures, alteration, and other internal textures in minerals that are not discernible with other analytical techniques. These results provide information about the real structure of minerals and materials and can be used for the reconstruction of geological processes of mineral formation and subsequent alteration. The information obtained from CL imaging in combination with spectral measurements of the CL emission allows for a more thorough understanding of structural states of solids and/or trace-element incorporation. Additional information can be obtained when luminescence studies are combined with other analytical techniques with high sensitivity and high spatial resolution.
Publisher
Springer Vienna,Springer Nature B.V
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