Intermediate frequencyIn communications and electronic engineering, an intermediate frequency (IF) is a frequency to which a carrier wave is shifted as an intermediate step in transmission or reception. The intermediate frequency is created by mixing the carrier signal with a local oscillator signal in a process called heterodyning, resulting in a signal at the difference or beat frequency. Intermediate frequencies are used in superheterodyne radio receivers, in which an incoming signal is shifted to an IF for amplification before final detection is done.
Multiplexage fréquentielLe multiplexage fréquentiel est aussi appelé MRF (« Multiplexage par répartition de fréquence » ou FDM, de l'anglais Frequency Division Multiplexing) ; il permet de partager la bande de fréquence sur une voie haute vitesse en une série de plusieurs canaux moins larges, qui permettent de faire circuler simultanément sur la voie haute vitesse les données provenant des différentes voies à plus basses vitesses. C'est la technique utilisée en ADSL pour éviter toute collision entre le signal montant et le signal descendant.
Beam-powered propulsionBeam-powered propulsion, also known as directed energy propulsion, is a class of aircraft or spacecraft propulsion that uses energy beamed to the spacecraft from a remote power plant to provide energy. The beam is typically either a microwave or a laser beam and it is either pulsed or continuous. A continuous beam lends itself to thermal rockets, photonic thrusters and light sails, whereas a pulsed beam lends itself to ablative thrusters and pulse detonation engines.
Mir (station spatiale)vignette|droite|320px|Diagramme de la station Mir avec un cargo Progress-M et un vaisseau Soyouz-TM amarrés. vignette|droite|320px|La station spatiale MIR avec la navette spatiale américaine. Mir (du russe Мир signifiant « Paix » et « Monde ») était une station spatiale russe placée en orbite terrestre basse par l'Union soviétique. Mise en orbite le et détruite volontairement le , elle fut assemblée en orbite entre 1986 et 1996.
Optical vortexAn optical vortex (also known as a photonic quantum vortex, screw dislocation or phase singularity) is a zero of an optical field; a point of zero intensity. The term is also used to describe a beam of light that has such a zero in it. The study of these phenomena is known as singular optics. In an optical vortex, light is twisted like a corkscrew around its axis of travel. Because of the twisting, the light waves at the axis itself cancel each other out.