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starlight. In ICE-EEVOLVE , we seek to unravel how chiral organic molecules, trapped in amorphous ice matrices, evolve from molecular clouds through star-forming regions to planetary systems. Laboratory
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period to compensate for compressive stress in the InGaAs layers. The final approach concerns the development of ultra-fast PIN photodiodes optimized for operation at 1 µm, using an absorption layer based
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of phase conversions. - to characterize the photophysical properties (absorption and emission) of the anhydrous phases as such or incorporated into polymer matrices in order to elaborate new water sensing
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