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The MADAM project will investigate fibrous diamonds to understand their formation and geological significance. By using advanced electron diffraction techniques, it aims to analyze nanometric mineral inclusions in diamonds, providing insights into deep Earth processes.
Diamonds are the only geological materials able to travel hundreds of kilometres vertically, horizontally and through time for billions of years, being un-modified since the day of their formation.
Not just a time capsule, when diamonds incorporate mineral inclusions captured from the deep mantle, they represent an open window into otherwise inaccessible regions of Earth.
Based on their formation depths, diamonds are classified as lithospheric (formed between about 120 and 200 km depth) and subl…
UNIVERSITA DEGLI STUDI DI PADOVA
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