Sinusoidal plane-wave solutions of the electromagnetic wave equationSinusoidal plane-wave solutions are particular solutions to the electromagnetic wave equation. The general solution of the electromagnetic wave equation in homogeneous, linear, time-independent media can be written as a linear superposition of plane-waves of different frequencies and polarizations. The treatment in this article is classical but, because of the generality of Maxwell's equations for electrodynamics, the treatment can be converted into the quantum mechanical treatment with only a reinterpretation of classical quantities (aside from the quantum mechanical treatment needed for charge and current densities).
Coefficient de FresnelLes coefficients de Fresnel, introduits par Augustin Jean Fresnel (1788-1827), interviennent dans la description du phénomène de réflexion-réfraction des ondes électromagnétiques à l'interface entre deux milieux, dont l'indice de réfraction est différent. Ils expriment les liens entre les amplitudes des ondes réfléchies et transmises par rapport à l'amplitude de l'onde incidente. On définit le coefficient de réflexion en amplitude r et le coefficient de transmission en amplitude t du champ électrique par : où Ei, Er et Et sont les amplitudes associées respectivement au champ électrique incident, réfléchi et transmis (réfracté).
Transverse modeA transverse mode of electromagnetic radiation is a particular electromagnetic field pattern of the radiation in the plane perpendicular (i.e., transverse) to the radiation's propagation direction. Transverse modes occur in radio waves and microwaves confined to a waveguide, and also in light waves in an optical fiber and in a laser's optical resonator. Transverse modes occur because of boundary conditions imposed on the wave by the waveguide.
LuminositéEn astronomie, la luminosité est la quantité totale d'énergie émise par unité de temps (le flux énergétique), par une étoile, une galaxie, ou n'importe quel autre objet céleste. Elle s'exprime en pratique en luminosité solaire ( = ). Le flux lumineux, qui mesure plus particulièrement l'émission en lumière visible, peut également s'exprimer sur une échelle logarithmique par la magnitude absolue. En astronomie, elle représente la quantité totale d'énergie rayonnée (dans le domaine de l'électromagnétisme) par unité de temps par un astre.
Envelope (waves)In physics and engineering, the envelope of an oscillating signal is a smooth curve outlining its extremes. The envelope thus generalizes the concept of a constant amplitude into an instantaneous amplitude. The figure illustrates a modulated sine wave varying between an upper envelope and a lower envelope. The envelope function may be a function of time, space, angle, or indeed of any variable.
Extended precisionExtended precision refers to floating-point number formats that provide greater precision than the basic floating-point formats. Extended precision formats support a basic format by minimizing roundoff and overflow errors in intermediate values of expressions on the base format. In contrast to extended precision, arbitrary-precision arithmetic refers to implementations of much larger numeric types (with a storage count that usually is not a power of two) using special software (or, rarely, hardware).
Méson DThe D mesons are the lightest particle containing charm quarks. They are often studied to gain knowledge on the weak interaction. The strange D mesons (Ds) were called "F mesons" prior to 1986. The D mesons were discovered in 1976 by the Mark I detector at the Stanford Linear Accelerator Center. Since the D mesons are the lightest mesons containing a single charm quark (or antiquark), they must change the charm (anti)quark into an (anti)quark of another type to decay.