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.
Automodulation de phaseL'automodulation de phase (self-phase modulation, souvent abrégé en SPM en anglais) est un effet optique non linéaire d'interaction lumière-matière (gaz, solide, liquide). Une impulsion ultra-courte, lorsqu'elle voyage dans un milieu matériel, induit une variation de l'indice de réfraction de ce milieu par effet Kerr. Cette variation induit à son tour un décalage de phase dans l'impulsion, ce qui conduit à une modification du spectre en fréquence de l'impulsion.
Faisceau gaussienEn optique, un faisceau gaussien est une solution particulière de l'équation de propagation de Helmholtz (au même titre qu'une onde plane) dans le cadre de l'approximation paraxiale. Ce modèle produit une meilleure description de rayonnements cohérents comme les faisceaux lasers bien qu'il soit incomplet dans le traitement de la diffraction. Plus spécifiquement, un faisceau gaussien est un faisceau dont l'évolution du profil transversal d'amplitude en fonction de la propagation spatiale est proportionnel à une fonction gaussienne, par exemple une fonction de Gauss-Hermite.
Pulsed laserPulsed operation of lasers refers to any laser not classified as continuous wave, so that the optical power appears in pulses of some duration at some repetition rate. This encompasses a wide range of technologies addressing a number of different motivations. Some lasers are pulsed simply because they cannot be run in continuous mode. In other cases the application requires the production of pulses having as large an energy as possible.
Fiber laserA fiber laser (or fibre laser in Commonwealth English) is a laser in which the active gain medium is an optical fiber doped with rare-earth elements such as erbium, ytterbium, neodymium, dysprosium, praseodymium, thulium and holmium. They are related to doped fiber amplifiers, which provide light amplification without lasing. Fiber nonlinearities, such as stimulated Raman scattering or four-wave mixing can also provide gain and thus serve as gain media for a fiber laser.
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.
Nonlinear systemIn mathematics and science, a nonlinear system (or a non-linear system) is a system in which the change of the output is not proportional to the change of the input. Nonlinear problems are of interest to engineers, biologists, physicists, mathematicians, and many other scientists since most systems are inherently nonlinear in nature. Nonlinear dynamical systems, describing changes in variables over time, may appear chaotic, unpredictable, or counterintuitive, contrasting with much simpler linear systems.
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.
Bandwidth-limited pulseA bandwidth-limited pulse (also known as Fourier-transform-limited pulse, or more commonly, transform-limited pulse) is a pulse of a wave that has the minimum possible duration for a given spectral bandwidth. Bandwidth-limited pulses have a constant phase across all frequencies making up the pulse. Optical pulses of this type can be generated by mode-locked lasers. Any waveform can be disassembled into its spectral components by Fourier analysis or Fourier transformation.
Spectroscopie laser ultrarapideLa spectroscopie laser ultrarapide est une technique spectroscopique qui utilise des lasers à impulsions ultracourtes pour l'étude de la dynamique sur des échelles de temps extrêmement courtes, de l'attoseconde (10−18 s) à la nanoseconde (10−9 s). Différentes méthodes sont utilisées pour examiner la dynamique des porteurs de charge, des atomes et des molécules. De nombreuses procédures différentes ont été développées pour différentes échelles de temps et différentes plages d'énergie des photons ; quelques méthodes courantes sont énumérées ci-dessous.