The optical theory of light-scattering by nonspherical particles is fundamental to remote sensing of the atmosphere and ocean, as well as other areas of computational physics, medical scanning, and electromagnetics. At present, many training programs in light scattering are woefully lacking. This book fills the void in existing research on light-scattering research and training, particularly in the case of large scattering particles, and provides a solid foundation on which future research can be based, including suggestions for directions for further work in the field. With the elucidation of…mehr
The optical theory of light-scattering by nonspherical particles is fundamental to remote sensing of the atmosphere and ocean, as well as other areas of computational physics, medical scanning, and electromagnetics. At present, many training programs in light scattering are woefully lacking. This book fills the void in existing research on light-scattering research and training, particularly in the case of large scattering particles, and provides a solid foundation on which future research can be based, including suggestions for directions for further work in the field. With the elucidation of the theoretical basis for light scattering (particularly within the framework of the physical-geometric optics method) and the demonstration of practical applications, this book will be invaluable for training future scientists in the discipline of light scattering, as well as for researchers and professionals using remote sensing techniques to analyse the properties of the atmosphere and oceans, and in the area of biophotonics.
Ping Yang is University Distinguished Professor and David Bullock Harris Chair in geosciences at Texas A&M University. His research focuses on light scattering, radiative transfer, and remote sensing. Yang is a Fellow of the American Physical Society (APS), the Institute of Electrical and Electronics Engineers (IEEE), OPTICA (formally, the Optical Society of America), The Electromagnetics Academy, the American Geophysical Union (AGU), the American Meteorological Society (AMS), and the American Association for the Advancement of Science (AAAS). Yang has received a number of awards/honors, including the Humboldt Research Award, the quadrennial Gold Medal by the International Radiation Commission (IRC), the NASA Exceptional Scientific Achievement Medal, the Ascent Award by the AGU Atmospheric Science Section, the David and Lucille Atlas Remote Sensing Prize from AMS, and the van de Hulst Light-Scattering Award from Elsevier. He served as an editor of the Journal of the Atmospheric Sciences, an Editor-in-Chief of the Journal of Quantitative Spectroscopy and Radiative Transfer, and an editor of the Journal of Geophysical Research-Atmospheres.
Inhaltsangabe
Preface 1. Fundamentals of the Geometric Optics Method 2. Conventional Geometric Optics Approach for Light Scattering by a Homogeneous Dielectric Particle 3. Improved Geometric Optics Method Based on Electromagnetic Integral Relations 4. Applications to Atmospheric Remote Sensing and Climate Research 5. Summary and Outlook References Index.
Preface 1. Fundamentals of the Geometric Optics Method 2. Conventional Geometric Optics Approach for Light Scattering by a Homogeneous Dielectric Particle 3. Improved Geometric Optics Method Based on Electromagnetic Integral Relations 4. Applications to Atmospheric Remote Sensing and Climate Research 5. Summary and Outlook References Index.
Es gelten unsere Allgemeinen Geschäftsbedingungen: www.buecher.de/agb
Impressum
www.buecher.de ist ein Internetauftritt der buecher.de internetstores GmbH
Geschäftsführung: Monica Sawhney | Roland Kölbl | Günter Hilger
Sitz der Gesellschaft: Batheyer Straße 115 - 117, 58099 Hagen
Postanschrift: Bürgermeister-Wegele-Str. 12, 86167 Augsburg
Amtsgericht Hagen HRB 13257
Steuernummer: 321/5800/1497
USt-IdNr: DE450055826