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Titlebook: Light Scattering Reviews 4; Single Light Scatter Alexander A. Kokhanovsky Book 2009 Springer-Verlag Berlin Heidelberg 2009 Aerosol.Aerosol

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書目名稱Light Scattering Reviews 4
副標題Single Light Scatter
編輯Alexander A. Kokhanovsky
視頻videohttp://file.papertrans.cn/587/586022/586022.mp4
概述Summarizes recent developments in the field of light scattering media optics and radiative transfer.Both theoretical and experimental results are considered
叢書名稱Springer Praxis Books
圖書封面Titlebook: Light Scattering Reviews 4; Single Light Scatter Alexander A. Kokhanovsky Book 2009 Springer-Verlag Berlin Heidelberg 2009 Aerosol.Aerosol
描述This fourth volume of Light Scattering Reviews is composed of three parts. The ?rstpartisconcernedwiththeoreticalandexperimentalstudiesofsinglelightsc- tering by small nonspherical particles. Light scattering by small particles such as, for instance, droplets in the terrestrial clouds is a well understood area of physical optics. On the other hand, exact theoretical calculations of light scattering p- terns for most of nonspherical and irregularly shaped particles can be performed only for the restricted values of the size parameter, which is proportional to the ratio of the characteristic size of the particle to the wavelength?. For the large nonspherical particles, approximations are used (e. g. , ray optics). The exact th- retical techniques such as the T-matrix method cannot be used for extremely large particles, such as those in ice clouds, because then the size parameter in the v- iblex=2?a/???,wherea is the characteristic size (radius for spheres), and the associated numerical codes become unstable and produce wrong answers. Yet another problem is due to the fact that particles in many turbid media (e. g. , dust clouds) cannot be characterized by a single shape. Often, refra
出版日期Book 2009
關(guān)鍵詞Aerosol; Aerosol microstructure; Geophysics; Light Scattering; Optical imaging; Optics; atmosphere; remote
版次1
doihttps://doi.org/10.1007/978-3-540-74276-0
isbn_softcover978-3-642-09362-3
isbn_ebook978-3-540-74276-0
copyrightSpringer-Verlag Berlin Heidelberg 2009
The information of publication is updating

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Laboratory measurements of the light scattered by clouds of solid particles by imaging techniqueh, Mars, Titan), in the interplanetary dust complex built up from dust released by comets and by asteroidal collisions (.; .; .; .). Space missions are rare and many objects cannot be visited (e.g. new comets). Although most dust clouds have very low number densities, they may be remotely detected b
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Space-time Green functions for diffusive radiation transport, in application to active and passive clso key elements of the Earth’s climate system. They are indeed the first-order regulators of the intake in solar energy: What portion goes back to space? What reaches the surface (then warms the ground, drives photosynthesis, etc.)? Clouds also contribute strongly to the vertical distribution of so
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Radiative transfer of luminescence light in biological tissuem for light at wavelengths of the visible and near-infrared spectrum, and its light-tissue interaction can be exploited not just for therapeutic but also for diagnostic purposes [.–.]. In biomedical optics, light sources are placed on top of the tissue surface, either in contact or non-contact, and
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The characteristic equation of radiative transfer theorythe integrodifferential radiative transfer equation (RTE) [.–.] or corresponding integral equation (IE) for source functions [., ., .]. Finite-difference methods [.–.], iteration techniques [., .], doubling method [., .] and Monte Carlo method [., .] are widely used to solve the abovementioned equat
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