The is is the first book on the market on the rapidly developing topic of atom optics, i.e., the manipulation of atoms by light. This research has led to atom cooling and trapping (for which the 1998 Nobel Prize in physics was awarded), Bose-Einstein condensation, and holds great promise for revolutionary developments in the field of lasers.
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Pierre Meystre obtained his Physics Diploma and PhD from the Swiss Federal Institute of Technology (EPFL) in Lausanne and his Habilitation in Theoretical Physics from the Ludwig Maximilian University of Munich. He joined the Max-Planck Institute for Quantum Optics in 1977, following a postdoctoral position at the University of Arizona College of Optical Sciences. He returned to Tucson in 1986, where he is now emeritus Regents Professor of Physics and Optical Sciences. He also served as Lead Editor of Physical Review Letters and as Editor in Chief of the American Physical Society. His research interests include theoretical quantum optics, ultracold science, and quantum optomechanics. He has published well over 300 papers, and is the author of the text "Elements of Quantum Optics", now in its 4th edition, together with Murray Sargent III, and of the monograph "Atom Optics." He was a recipient of the Humboldt Foundation Research Prize for Senior US Scientists, the R. W. Wood Prize of the Optical Society of America, and the Willis E. Lamb Award for Laser Science and Quantum Optics. He is a Fellow of the American Physical Society, the Optical Society of America, and the American Association for the Advancement of Science, and Honorary Professor at East China Normal University.
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Anbieter: Ria Christie Collections, Uxbridge, Vereinigtes Königreich
Zustand: New. In English. Artikel-Nr. ria9781441929303_new
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Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - One of the most profound revolutions brought about by quantum mechanics is that it does away with the distinction between waves and particles: atoms, in particular, can exhibit all the properties that we associate with wave phenomena, such as diffraction and interference; it has recently even become possible to prepare collections of atoms in coherent states, like those of photons in a laser beam. These developments are at the core of the rapidly expanding field of atom optics. Atom Optics gradually leads the reader from elementary concepts to the frontiers of the field. It is organized in three parts, linear, nonlinear, and quantum atom optics. After a review of light forces on atoms and of laser cooling, the first part discusses the application of light forces to atom optical elements such as gratings, mirrors and lenses, matter-wave diffraction, and atomic traps and resonators. The discussion of nonlinear atom optics starts with a review of collisions from a viewpoint that clearly demonstrates its profound analogy with nonlinear optics. The last part, quantum atom optics, first recalls key results of many-body theory in a formulation geared specifically toward atom optics. This is followed by a discussion of atomic Bose--Einstein condensation and 'atom lasers.' The final chapters treat such applications as atomic solitons, four-wave mixing, superradiance, and conclude with the coherent amplification of matter waves. An online web component to the book, a gateway to atom optics, contains links to the leading references and journals in the field, to research sites, and to updates for the contents of the book. Artikel-Nr. 9781441929303
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