Stable isotope ratioThe term stable isotope has a meaning similar to stable nuclide, but is preferably used when speaking of nuclides of a specific element. Hence, the plural form stable isotopes usually refers to isotopes of the same element. The relative abundance of such stable isotopes can be measured experimentally (isotope analysis), yielding an isotope ratio that can be used as a research tool. Theoretically, such stable isotopes could include the radiogenic daughter products of radioactive decay, used in radiometric dating.
Electron ionizationElectron ionization (EI, formerly known as electron impact ionization and electron bombardment ionization) is an ionization method in which energetic electrons interact with solid or gas phase atoms or molecules to produce ions. EI was one of the first ionization techniques developed for mass spectrometry. However, this method is still a popular ionization technique. This technique is considered a hard (high fragmentation) ionization method, since it uses highly energetic electrons to produce ions.
Laser hélium-néonthumb|right|Laser hélium-néon en démonstration au Laboratoire Kastler Brossel. Un laser hélium-néon est un laser à de petite dimension. Il a de nombreuses applications scientifiques et industrielles, on l'utilise aussi au laboratoire pour les démonstrations d'optique. Il émet dans le rouge à (nanomètres). Le milieu amplificateur est un mélange de gaz néon et hélium, dans une proportion variant de 1/5 à 1/20, enfermé à basse pression (en moyenne par centimètre de longueur de la cavité) dans une ampoule de verre.
Laser safetyLaser radiation safety is the safe design, use and implementation of lasers to minimize the risk of laser accidents, especially those involving eye injuries. Since even relatively small amounts of laser light can lead to permanent eye injuries, the sale and usage of lasers is typically subject to government regulations. Moderate and high-power lasers are potentially hazardous because they can burn the retina, or even the skin.
Ion sourceAn ion source is a device that creates atomic and molecular ions. Ion sources are used to form ions for mass spectrometers, optical emission spectrometers, particle accelerators, ion implanters and ion engines. Electron ionization Electron ionization is widely used in mass spectrometry, particularly for organic molecules. The gas phase reaction producing electron ionization is M{} + e^- -> M^{+\bullet}{} + 2e^- where M is the atom or molecule being ionized, e^- is the electron, and M^{+\bullet} is the resulting ion.
IonisationL'ionisation est l'action qui consiste à ajouter ou enlever des charges à un atome ou une molécule électriquement neutre, qui devient ainsi un ion (chargé positivement ou négativement). Elle peut être due à : des causes physiques telles qu'un niveau élevé du potentiel électrique, la présence de radiations ou une température élevée ; des causes chimiques telles qu'une dissolution dans un solvant polaire ; la structure même de la matière, dans les sels fondus, les liquides ioniques et les cristaux ioniques.
Géochimie isotopiqueLa géologie isotopique est une branche de la géologie, apparentée à la géochimie, qui exploite l'étude des isotopes stables et radioactifs présents sur Terre pour en étudier la composition et les variations au cours des temps géologiques. À l'origine, la géologie isotopique a consisté à utiliser les connaissances concernant la radioactivité afin de dater des roches et des minéraux. Cette discipline, au carrefour de la géologie et de la physique nucléaire, s'est surtout illustrée par ses méthodes de datation absolue.
Ion laserAn ion laser is a gas laser that uses an ionized gas as its lasing medium. Like other gas lasers, ion lasers feature a sealed cavity containing the laser medium and mirrors forming a Fabry–Pérot resonator. Unlike helium–neon lasers, the energy level transitions that contribute to laser action come from ions. Because of the large amount of energy required to excite the ionic transitions used in ion lasers, the required current is much greater, and as a result almost all except for the smallest ion lasers are water-cooled.
Reference materials for stable isotope analysisIsotopic reference materials are compounds (solids, liquids, gasses) with well-defined isotopic compositions and are the ultimate sources of accuracy in mass spectrometric measurements of isotope ratios. Isotopic references are used because mass spectrometers are highly fractionating. As a result, the isotopic ratio that the instrument measures can be very different from that in the sample's measurement. Moreover, the degree of instrument fractionation changes during measurement, often on a timescale shorter than the measurement's duration, and can depend on the characteristics of the sample itself.
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.