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Titlebook: Nonlinear Optical Materials; Jerome V. Moloney Book 1998 Springer Science+Business Media New York 1998 dielectrics.laser.nonlinear optics.

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书目名称Nonlinear Optical Materials
编辑Jerome V. Moloney
视频video
丛书名称The IMA Volumes in Mathematics and its Applications
图书封面Titlebook: Nonlinear Optical Materials;  Jerome V. Moloney Book 1998 Springer Science+Business Media New York 1998 dielectrics.laser.nonlinear optics.
描述Mathematical methods play a significant role in the rapidly growing field of nonlinear optical materials. This volume discusses a number of successful or promising contributions. The overall theme of this volume is twofold: (1) the challenges faced in computing and optimizing nonlinear optical material properties; and (2) the exploitation of these properties in important areas of application. These include the design of optical amplifiers and lasers, as well as novel optical switches. Research topics in this volume include how to exploit the magnetooptic effect, how to work with the nonlinear optical response of materials, how to predict laser-induced breakdown in efficient optical devices, and how to handle electron cloud distortion in femtosecond processes.
出版日期Book 1998
关键词dielectrics; laser; nonlinear optics; optical devices; optical material; optical properties; optics; semico
版次1
doihttps://doi.org/10.1007/978-1-4612-1714-5
isbn_softcover978-1-4612-7253-3
isbn_ebook978-1-4612-1714-5Series ISSN 0940-6573 Series E-ISSN 2198-3224
issn_series 0940-6573
copyrightSpringer Science+Business Media New York 1998
The information of publication is updating

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书目名称Nonlinear Optical Materials读者反馈学科排名




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Spatial Solitons in x(2) and (3) Dielectrics and Control by Magnetooptic Materials,ons. They range from being almost entirely mathematical, through mixed approaches, based upon linear stability analysis, to being entirely variational [2–5]. The problems already addressed in this group have used generic coupled Schrödinger equations to yield soliton dynamics, expressed in terms of
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Microscopic Modelling of the Nonlinear Optical Properties of Semiconductors,. The derivation of the equations of motion for the electromagnetic field and the material current is presented and relevant approximation schemes are derived. A hierarchy of model equations is discussed which contain transport of light and electronic excitations. The theory is applied to several ex
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Ultrafast Intense Probes of Nonlinear Optical Material Interactions,established that a host of complex physical processes could act in concert as local field intensities approached the material breakdown threshold. In general, ionization of the material, electrostriction, stimulated scattering (Raman and Brillouin 3-wave processes), thermal breakdown, and other phen
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