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Debye Instituut for Nanomaterial Science (P) Afdeling Nanophotonics - zonnecellen, nanomaterialen (Schropp) - ultrasnelle processen (Dijkhuis/Krol) - Bose-Einstein.

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Presentatie over: "Debye Instituut for Nanomaterial Science (P) Afdeling Nanophotonics - zonnecellen, nanomaterialen (Schropp) - ultrasnelle processen (Dijkhuis/Krol) - Bose-Einstein."— Transcript van de presentatie:

1 Debye Instituut for Nanomaterial Science (P) Afdeling Nanophotonics - zonnecellen, nanomaterialen (Schropp) - ultrasnelle processen (Dijkhuis/Krol) - Bose-Einstein condensaten (Van der Straten) - nanoplasmonica (Van Oosten) Afdeling Soft Condensed Matter/Biophysics - colloïden (Van Blaaderen/Dijkstra) - microscopie (Gerritsen) FOM Instituten (AMOLF/Rijnhuizen)

2 Deposition Solar Cell formation Cells on flexible foils Modules Solar Cells Plasma CVD or Hot Wire CVD Plasma CVD or Hot Wire CVD ITO p p p n n n a-SiGe:H µc-Si:H proto-Si:H stainless steel + TBR gold Spectrum splitting capability Spectrum splitting capability Optical Enhancement Structure Optical Enhancement Structure

3 Ultrafast Dynamics nanowire lasers nonlinear acoustics material modification

4

5 Atom Optics Quantum matter Expanding BEC Superradiance Heat conduction

6 Soft Condensed Matter Soft condensed matter systems are materials which deform easily under the influence of external fields such as electric fields, shear, or gravity. They contain structures that are much larger than atomic or molecular dimensions. Their dynamics is governed by thermal fluctuations. We study the physics of soft matter model systems and, using these insights, synthesize new micro  structured materials from them. more information: Synthesis of new colloids Photonic crystals Confocal microscopy Scattering & Diffraction Computer simulations Optical tweezers

7 Biophysics The Molecular Biophysics group works on the application and development of novel fluorescence based imaging methods that use advanced light sources, non- linear excitation methods and contrast based on fluorescence spectroscopy. see: www1.phys.uu.nl/wwwmbf/ Confocal microscopy Single molecule microscopy Nanoparticle spectroscopy and microscopy Non-linear microscopy Imaging of molecular interactions In-vivo imaging 10  m Single QDs In-vivo imaging fs laser Cluster size imaging

8 Aanbevolen keuzes tweede jaar 1 e semester Project natuurkunde onderzoek, Experimentele stage 2 e semester Mechanica 2, Elektriciteitsleer 2, Inleiding signaalverwerking, Numerieke methoden voor fysici, wiskundige technieken 3 derde jaar 1 e semester Moderne Gecondenseerde Materie, Thermische fysica 2, Kwantummechanica 2, 2 e semester Classical field theory of Mastervak: Photon Physics, Device Physics, Soft Condensed Matter


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