Ultrashort pulseIn optics, an ultrashort pulse, also known as an ultrafast event, is an electromagnetic pulse whose time duration is of the order of a picosecond (10−12 second) or less. Such pulses have a broadband optical spectrum, and can be created by mode-locked oscillators. Amplification of ultrashort pulses almost always requires the technique of chirped pulse amplification, in order to avoid damage to the gain medium of the amplifier. They are characterized by a high peak intensity (or more correctly, irradiance) that usually leads to nonlinear interactions in various materials, including air.
Optical heterodyne detectionOptical heterodyne detection is a method of extracting information encoded as modulation of the phase, frequency or both of electromagnetic radiation in the wavelength band of visible or infrared light. The light signal is compared with standard or reference light from a "local oscillator" (LO) that would have a fixed offset in frequency and phase from the signal if the latter carried null information. "Heterodyne" signifies more than one frequency, in contrast to the single frequency employed in homodyne detection.
Densité spectrale de puissanceOn définit la densité spectrale de puissance (DSP en abrégé, Power Spectral Density ou PSD en anglais) comme étant le carré du module de la transformée de Fourier, divisé par le temps d'intégration, (ou, plus rigoureusement, la limite quand tend vers l'infini de l'espérance mathématique du carré du module de la transformée de Fourier du signal - on parle alors de densité spectrale de puissance moyenne).
Homodyne detectionIn electrical engineering, homodyne detection is a method of extracting information encoded as modulation of the phase and/or frequency of an oscillating signal, by comparing that signal with a standard oscillation that would be identical to the signal if it carried null information. "Homodyne" signifies a single frequency, in contrast to the dual frequencies employed in heterodyne detection. When applied to processing of the reflected signal in remote sensing for topography, homodyne detection lacks the ability of heterodyne detection to determine the size of a static discontinuity in elevation between two locations.
Atténuation du signalvignette|296x296px|L'atténuation du signal en fonction de la fréquence et du temps laisse apparaître un motif nuageux sur un spectrogramme. Le temps est représenté sur l'axe horizontal, la fréquence sur l'axe vertical. L'intensité du signal apparaît en niveaux de gris. Dans les transmissions sans fil, l'atténuation du signal ou évanouissement (fading) est la variation de la puissance du signal causée par plusieurs variables. Ces variables incluent le temps, la position géographique et la fréquence.
Analyseur de spectreUn analyseur de spectre est un instrument de mesure destiné a afficher un signal dans le domaine frequentiel contrairement à un oscilloscope qui affiche le signal dans le domaine temporel. Les signaux peuvent être de natures diverses : électrique, optique, sonore, radioélectrique. Un analyseur de spectre électrique permet la mesure de la tension de signaux électriques dans le domaine fréquentiel. Les mesures peuvent aller de quelques dixièmes de Hz à plusieurs centaines de GHz.
Image resolutionImage resolution is the level of detail an holds. The term applies to digital images, film images, and other types of images. "Higher resolution" means more image detail. Image resolution can be measured in various ways. Resolution quantifies how close lines can be to each other and still be visibly resolved. Resolution units can be tied to physical sizes (e.g. lines per mm, lines per inch), to the overall size of a picture (lines per picture height, also known simply as lines, TV lines, or TVL), or to angular subtense.
Amplification par dérive de fréquencevignette|329x329px|Photographie d'un laser femtoseconde à amplification par dérive de fréquence (Laboratoire d'optique Appliquée). L'amplification à dérive de fréquence (CPA en anglais, pour en, chirp désignant le gazouillis d'oiseau, ce terme faisant l'analogie au chant de certains oiseaux qui font varier la fréquence de leur chant) est une technique d'amplification des impulsions laser ultracourtes jusqu'à des niveaux de puissance de l'ordre du pétawatt.
Femtosecond pulse shapingIn optics, femtosecond pulse shaping refers to manipulations with temporal profile of an ultrashort laser pulse. Pulse shaping can be used to shorten/elongate the duration of optical pulse, or to generate complex pulses. Generation of sequences of ultrashort optical pulses is key in realizing ultra high speed optical networks, Optical Code Division Multiple Access (OCDMA) systems, chemical and biological reaction triggering and monitoring etc.
Rayleigh fadingRayleigh fading is a statistical model for the effect of a propagation environment on a radio signal, such as that used by wireless devices. Rayleigh fading models assume that the magnitude of a signal that has passed through such a transmission medium (also called a communication channel) will vary randomly, or fade, according to a Rayleigh distribution — the radial component of the sum of two uncorrelated Gaussian random variables.