ProtocrystallineA protocrystalline phase is a distinct phase occurring during crystal growth, which evolves into a microcrystalline form. The term is typically associated with silicon films in optical applications such as solar cells. Amorphous silicon (a-Si) is a popular solar cell material owing to its low cost and ease of production. Owing to disordered structure (Urbach tail), its absorption extends to the energies below the band gap resulting in a wide-range spectral response; however, it has a relatively low solar cell efficiency.
Solar powerSolar power is the conversion of energy from sunlight into electricity, either directly using photovoltaics (PV) or indirectly using concentrated solar power. Photovoltaic cells convert light into an electric current using the photovoltaic effect. Concentrated solar power systems use lenses or mirrors and solar tracking systems to focus a large area of sunlight to a hot spot, often to drive a steam turbine.
Thin-film opticsThin-film optics is the branch of optics that deals with very thin structured layers of different materials. In order to exhibit thin-film optics, the thickness of the layers of material must be similar to the coherence length; for visible light it is most often observed between 200 and 1000 nm of thickness. Layers at this scale can have remarkable reflective properties due to light wave interference and the difference in refractive index between the layers, the air, and the substrate.
RéfractionEn physique des ondes, la réfraction désigne la courbe d'une onde (notamment optique, acoustique ou sismologique) à l'interface entre deux milieux aux vitesses de phase différentes sur le plan chimique ou physique (densité, impédance, température...) La réfraction se traduit par une modification de l'orientation : du front d'onde : c'est la ligne que décrit une vague dans l'eau (optique physique et sismologie) ; du rayon : c'est la direction de propagation de l'onde, perpendiculaire au front d'onde (optique géométrique).