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Lasers in chemistry --- Lasers in chemistry. --- Chemical apparatus
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Lasers in chemistry --- Molecular dynamics --- Laser spectroscopy --- Lasers --- Molecules --- Lasers in chemistry. --- Molecular dynamics.
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Lasers en chimie. --- Lasers in chemistry. --- Isotopes --- Isotope separation. --- Séparation.
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Isotopes --- Uranium --- Lasers en chimie. --- Isotope separation. --- Lasers in chemistry. --- Séparation. --- Isotopes. --- Enrichissement.
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Lasers in chemistry --- -Chemical apparatus --- Congresses --- Fluorescence. --- Ionization. --- Lasers. --- Radicals (Chemistry) --- Catalysis --- Collisions --- Energy level excitation --- Reaction (chemistry) --- Spectrometry --- Synthesis
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Physics --- Lasers in chemistry --- Lasers in biochemistry --- Physique --- Lasers en chimie --- Lasers en biochimie --- Periodicals. --- Périodiques --- Faisceaux laser --- Applied Physics --- General and Others --- Optics & Opto Electronics --- Journal --- Periodicals --- Chemical apparatus
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lasers --- chemie --- lasers (technologie) --- Chemistry --- Laser photochemistry --- Laser spectroscopy --- Lasers in chemistry --- Spectroscopie à laser --- Lasers en chimie --- Spectroscopie à laser --- Spectrometric and optical chemical analysis --- fysicochemie --- Photochemistry --- Chemical laboratory practice --- lasers [optical instruments]
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The development of lasers capable of producing high-intensity pulses has opened a new area in the study of light-matter interactions. The corresponding laser fields are strong enough to compete with the Coulomb forces in controlling the dynamics of atomic systems and give rise to multiphoton processes. This book presents a unified account of this rapidly developing field of physics. The first part describes the fundamental phenomena occurring in intense laser-atom interactions and gives the basic theoretical framework to analyze them. The second part contains a detailed discussion of Floquet theory, the numerical integration of the wave equations and approximation methods for the low- and high-frequency regimes. In the third part, the main multiphoton processes are discussed: multiphoton ionization, high harmonic and attosecond pulse generation, and laser-assisted electron-atom collisions. Aimed at graduate students in atomic, molecular and optical physics, the book will also interest researchers working on laser interactions with matter.
Electron-atom collisions. --- Floquet theory. --- Laser pulses, Ultrashort. --- Multiphoton processes. --- Multiphoton ionization. --- Photoionization --- Multiple photon processes --- Processes, Multiphoton --- Excited state chemistry --- Lasers in chemistry --- Photochemistry --- Quantum electrodynamics --- Quantum optics --- Laser pulses, Picosecond --- Light pulses, Picosecond --- Light pulses, Ultrashort --- Picosecond laser pulses --- Picosecond light pulses --- Ultrashort laser pulses --- Ultrashort light pulses --- Laser beams --- Pulse techniques (Electronics) --- Picosecond pulses --- Floquet-Lyapunov theorem --- Floquet's theorem --- Differential equations --- Atom-electron collisions --- Atom-electron interactions --- Electron-atom interactions --- Collisions (Nuclear physics)
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Multi-Photon Quantum Interference covers the phenomena of quantum interference through the multi-photon effects of photon correlation. The author’s focus is on the temporal correlation among photons and how it influences the interference effect. Included is discussion of some of the well known multi-photon interference schemes, such as Hong-Ou-Mandel interferometer and Franson Interferometer for two-photon system, quantum state teleportation and swapping for four-photon system, and quantum state reconstruction for multi-photon system. A unique feature of the book is its quantitative characterization of photon indistinguishability and its connection to interference effects.
Quantum interference. --- Multiphoton processes. --- Multiple photon processes --- Processes, Multiphoton --- Excited state chemistry --- Lasers in chemistry --- Photochemistry --- Quantum electrodynamics --- Quantum optics --- Interference, Quantum --- Quantum theory --- Microwaves. --- Electronics. --- Microwaves, RF and Optical Engineering. --- Quantum Optics. --- Electronics and Microelectronics, Instrumentation. --- Optics, Lasers, Photonics, Optical Devices. --- Electrical engineering --- Physical sciences --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Optical engineering. --- Quantum optics. --- Microelectronics. --- Lasers. --- Photonics. --- New optics --- Optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Photons --- Mechanical engineering
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