International developmentInternational development or global development is a broad concept denoting the idea that societies and countries have differing levels of economic or human development on an international scale. It is the basis for international classifications such as developed country, developing country and least developed country, and for a field of practice and research that in various ways engages with international development processes. There are, however, many schools of thought and conventions regarding which are the exact features constituting the "development" of a country.
NanophotoniqueLa nanophotonique, aussi connue sous le nom de nano-optique ou nano-orto, est l'étude de la lumière et de ses interactions avec la matière à des échelles nanométriques. On parle de nanophotonique lorsque les phénomènes mis en jeu interviennent sur des distances inférieures à la longueur d'onde (dans la gamme visible du spectre électromagnétique, la longueur d'onde se situe entre 400 et 700nm). La nanophotonique cherche à dépasser (ou contourner) les limites imposées par le phénomène de diffraction en optique.
Germanate de bismuthLe germanate de bismuth est un oxyde de bismuth et de germanium (sigle BGO, formule chimique Bi4Ge3O12 (soit Bi(GeO)) ou le type moins commun Bi12GeO20). Les monocristaux sont obtenus par le procédé de Czochralski et possèdent une structure cubique. Les applications de ce matériau photoréactif sont importantes. Il est principalement utilisé pour la détection par scintillation, en spectrométrie gamma et en tomographie. Le stockage optique d'information, la commutation optique spatiale et la caméra holographique exploitent ses propriétés.
Earth–ionosphere waveguideThe Earth–ionosphere waveguide refers to the phenomenon in which certain radio waves can propagate in the space between the ground and the boundary of the ionosphere. Because the ionosphere contains charged particles, it can behave as a conductor. The earth operates as a ground plane, and the resulting cavity behaves as a large waveguide. Extremely low frequency (ELF) (< 3 kHz) and very low frequency (VLF) (3–30 kHz) signals can propagate efficiently in this waveguide.
Free-space path lossIn telecommunication, the free-space path loss (FSPL) (also known as free-space loss, FSL) is the attenuation of radio energy between the feedpoints of two antennas that results from the combination of the receiving antenna's capture area plus the obstacle-free, line-of-sight (LoS) path through free space (usually air). The "Standard Definitions of Terms for Antennas", IEEE Std 145-1993, defines free-space loss as "The loss between two isotropic radiators in free space, expressed as a power ratio.