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Unité de recherche
INNOSUISSE
Numéro de projet
12782.1 PFNM-NM
Titre du projet
Advanced fabrication processes for micro- and nanooptical elements AFAP|MNT ERANET NanoHyMO - Nano-Structuring of Hybrid Micro-Optics using 3D Laser-Lithography
Titre du projet anglais
Advanced fabrication processes for micro- and nanooptical elements AFAP|MNT ERANET NanoHyMO - Nano-Structuring of Hybrid Micro-Optics using 3D Laser-Lithography

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Résumé des résultats (Abstract)
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Textes saisis


CatégorieTexte
Description succincte
(Allemand)
Advanced fabrication processes for micro- and nanooptical elements AFAP|MNT ERANET NanoHyMO - Nano-Structuring of Hybrid Micro-Optics using 3D Laser-Lithography
Description succincte
(Anglais)
Advanced fabrication processes for micro- and nanooptical elements AFAP|MNT ERANET NanoHyMO - Nano-Structuring of Hybrid Micro-Optics using 3D Laser-Lithography
Résumé des résultats (Abstract)
(Allemand)
Rapid fabrication of high quality optical elements becomes more and more important. At the same time the|number of pieces for each component gets smaller and smaller. The trend is towards customizing microoptical|components already at low production quantities. Our project aims on the development of a|fabrication technology to follow this trend. The aim is to fabricate specific functional covers on high precision|standard micro optical template components. The field of application is high power light management and|beam shaping. The basic problem here is the etching technology to transfer a shallow and particular|functional structure into inorganic material. Our project concentrates on such a technology and will deliver|functional models as proof of principle..
Résumé des résultats (Abstract)
(Anglais)
Rapid fabrication of high quality optical elements becomes more and more important. At the same time the|number of pieces for each component gets smaller and smaller. The trend is towards customizing microoptical|components already at low production quantities. Our project aims on the development of a|fabrication technology to follow this trend. The aim is to fabricate specific functional covers on high precision|standard micro optical template components. The field of application is high power light management and|beam shaping. The basic problem here is the etching technology to transfer a shallow and particular|functional structure into inorganic material. Our project concentrates on such a technology and will deliver|functional models as proof of principle..