Lightscatteringisusedinmanyapplications,rangingfromopticalparticlesizing of powders to interstellar dust studies. At the moment there is no a specialized journal aimed at studies of exclusively light scattering problems. Instead, d- ferent aspects of the problem and also di?erent applications are considered in a varietyof specializedjournalscoveringseveralscienti?cdisciplinessuchasch- istry, physics, biology, medicine, astrophysics, and atmospheric science, to name afew. The Light Scattering Reviews (LSR) series started in 2006 with the aim of facilitating interaction between di?erent groups…mehr
Lightscatteringisusedinmanyapplications,rangingfromopticalparticlesizing of powders to interstellar dust studies. At the moment there is no a specialized journal aimed at studies of exclusively light scattering problems. Instead, d- ferent aspects of the problem and also di?erent applications are considered in a varietyof specializedjournalscoveringseveralscienti?cdisciplinessuchasch- istry, physics, biology, medicine, astrophysics, and atmospheric science, to name afew. The Light Scattering Reviews (LSR) series started in 2006 with the aim of facilitating interaction between di?erent groups of scientists working in diverse scienti?c areas but using the same technique, namely light scattering, for so- tion of speci?c scienti?c tasks. This second volume of LSR is devoted mostly to applications of light scattering in atmospheric research. The book consists of eight contributions prepared by internationally recognized authorities in cor- spondent research ?elds. The ?rst paper prepared by Howard Barker deals with the recent devel- ments in solar radiative transfer in the terrestrial atmosphere and global climate modelling. In particular, methods to compute radiative transfer characteristics needed for numerical global climate models are discussed in a great depth. Their de?cienciesareaddressedaswell.Theproblemof3Dradiativetransferincloudy atmospheres, a hot topic in modern climate modelling, is also considered.
Education: PhD: Optics, B. I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, Minsk, Belarus, 1991. Title of PhD thesis: " The dependence of light scattering characteristics of aerosols and foams on their microstructure." Master of Science: Theoretical Physics, Belarussian State University, Minsk, Belarus, 1983. Title of thesis: "The asymptotic light regime in deep layers of optically active light scattering media." Main research areas: Radiative transfer, multiple and single light scattering, optics of aerosols and hydrosols, foams, snow and clouds, inverse problems, remote sensing of atmosphere and ocean. Present position: Senior Researcher Laboratory of Light Scattering Media Optics B. I. Stepanov Institute of Physics, National Academy of Sciences of Belarus Skarina Avenue 72, Minsk 220072, Belarus November 1983- Present and Institute of Environmental Physics and Remote Sensing, Bremen University, Bremen, Germany March 2001 - Present
Inhaltsangabe
Remote Sensing and Radiative Transfer.- Solar radiative transfer and global climate modelling.- On the remote sensing and radiative properties of cirrus.- Retrieval of cloud optical thickness and effective radius using multispectral remote sensing and accounting for 3D effects.- Raman lidar remote sensing of geophysical media.- Inverse Problems.- Linearization of vector radiative transfer by means of the forward-adjoint perturbation theory and its use in atmospheric remote sensing.- Derivatives of the radiation field and their application to the solution of inverse problems.- Numerical Techniques.- Studies of light scattering by complex particles using the null-field method with discrete sources.- Radiative transfer in horizontally and vertically inhomogeneous turbid media.
Remote Sensing and Radiative Transfer.- Solar radiative transfer and global climate modelling.- On the remote sensing and radiative properties of cirrus.- Retrieval of cloud optical thickness and effective radius using multispectral remote sensing and accounting for 3D effects.- Raman lidar remote sensing of geophysical media.- Inverse Problems.- Linearization of vector radiative transfer by means of the forward-adjoint perturbation theory and its use in atmospheric remote sensing.- Derivatives of the radiation field and their application to the solution of inverse problems.- Numerical Techniques.- Studies of light scattering by complex particles using the null-field method with discrete sources.- Radiative transfer in horizontally and vertically inhomogeneous turbid media.
Rezensionen
From the reviews: "The monograph includes eight in-depth review chapters contributed by leading experts in various aspects of light scattering and its applications. ... this one provides a wealth of information presented mostly in a systematic, self-contained, and accessible form. ... This book will be a valuable addition to any research or university library. Individual professional researchers should also seriously consider buying a copy of the book for personal use ... ." (Michael I. Mishchenko, Journal of Quantitative Spectroscopy and Radiative Transfer, Vol. 109, 2008)
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