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Titlebook: Analytical Laser Spectroscopy; S. Martellucci,A. N. Chester Book 1985 Plenum Press, New York 1985 Raman spectroscopy.UV.electronics.laser.

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期刊全稱Analytical Laser Spectroscopy
影響因子2023S. Martellucci,A. N. Chester
視頻videohttp://file.papertrans.cn/157/156609/156609.mp4
學(xué)科分類NATO Science Series B:
圖書封面Titlebook: Analytical Laser Spectroscopy;  S. Martellucci,A. N. Chester Book 1985 Plenum Press, New York 1985 Raman spectroscopy.UV.electronics.laser.
影響因子This volume contains the Proceedings of a two-week NATO A.S.I. on "Analytical Laser Spectroscopy", held from September 23 to October 3, 1982 in Erice, Italy. This is the 9th annual course of Inter- national School of Quantum Electronics organized under the auspices of the "E. Majorana" Center for Scientific Culture. The Advanced Study Institute has been devoted to the analytical applications of lasers in spectroscopy. Atomic and molecular spec- troscopy is one of the research fields in which the use of lasers has had a dramatic impact. New spectral information, difficult or impos- sible to gather by classical spectroscopy, extremely high resolution spectroscopy of atoms and molecules made possible by the overcoming of the Doppler effect, selective excitation and detection of single atomic and molecular quantum states are just few typical examples of how laser sources have revolutionized the field, offering challenging problems of both fundamental and applied nature. Among the possible approaches to a course on Analytical Laser Spectroscopy, the one which emphasizes the scientific and technologi- cal aspects of the advanced laser techniques when applied to chemical analysis has been
Pindex Book 1985
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Opto-Acoustics:Old Idea with New Applications on a sample. This effect was discovered by A. G. Bell in 1880, who observed that audible sound is produced when chopped sunlight is absorbed by a sample. Although the OA effect is very old, there is a great resurgence of interest in it in the past several years, both theoretically and experimentall
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Photoacoustic Analysis in Condensed MatterW. Rontgen [2] and J. Tyndall [3]. Although such effect has been known for a long time no developments in studying physical properties of materials have been reported until 1973. This delay in the improvement of the P. A. techniques is due to the fact that lasers are used as sources in such techniqu
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Laser Detection of Combustion Species laser-induced fluorescence for determining the concentrations of selected molecules and/or radicals. The second is Mie scattering of laser radiation for determining the size and concentration of carbonaceous particulates. In discussing laser-induced fluorescence, attention will be given to:applicab
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Analytical and Diagnostic Applications of Laser Induced Fluorescence in Flames and Plasmasential of this source and of the possibility of non-intrusive optical probing of several physical parameters of fundamental interest in laboratory flames and industrial devices for a better understanding of their combustion kinetics.
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Analytical Spectroscopy Using Laser Atomizerssary to first explain the properties of typical excitation sources. In optical spectrochemical analysis, chemical elements contained in a sample are determined with the help of their optical line spectra. This can only be done, if a representative part of a solid or liquid sample is first converted
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Theory of Resonance Ionization Spectroscopyitions from the selected state of the atoms or molecules in question to higher states, one of which will be ionized by the absorption of another photon. At least one resonance step is used in the stepwise ionization process, and it has been shown[1–4] that the ionization probability of the spectrosc
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One-Atom Detection and Statistical Studies with Resonance Ionization Spectroscopypresumably a worthy goal in scientific research[l]. The advent of the laser created real hope that these aspirations will be realized. The counting of atoms is not merely an intellectual exercise set apart from real-world applications. On the contrary, even though the capability is scarcely more tha
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