Cristallographie aux rayons XLa cristallographie aux rayons X, radiocristallographie ou diffractométrie de rayons X (DRX, on utilise aussi souvent l'abréviation anglaise XRD pour X-ray diffraction) est une technique d'analyse fondée sur la diffraction des rayons X par la matière, particulièrement quand celle-ci est cristalline. La diffraction des rayons X est une diffusion élastique, c'est-à-dire sans perte d'énergie des photons (longueurs d'onde inchangées), qui donne lieu à des interférences d'autant plus marquées que la matière est ordonnée.
Spherical aberrationIn optics, spherical aberration (SA) is a type of aberration found in optical systems that have elements with spherical surfaces. Lenses and curved mirrors are prime examples, because this shape is easier to manufacture. Light rays that strike a spherical surface off-centre are refracted or reflected more or less than those that strike close to the centre. This deviation reduces the quality of images produced by optical systems. The effect of spherical aberration was first identified by Ibn al-Haytham who discussed it in his work Kitāb al-Manāẓir.
ChatoyancyIn gemology, chatoyancy (ʃəˈtɔɪ.ənsi ), or chatoyance or cat's eye effect, is an optical reflectance effect seen in certain gemstones, woods, and carbon fibre. Coined from the French œil de chat, meaning 'cat's eye', chatoyancy arises either from the fibrous structure of a material, as in tiger's eye quartz, or from fibrous inclusions or cavities within the stone, as in cat's eye chrysoberyl. The precipitates that cause chatoyance in chrysoberyl are the mineral rutile, composed mostly of titanium dioxide.