Scattering and Diffraction in Physical Optics PDF

AUTEUR Manuel Nieto-Vesperinas
NOM DE FICHIER Scattering and Diffraction in Physical Optics.pdf
TAILLE DU FICHIER 9,65 MB
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This book presents a comprehensive tutorial on propagation, diffraction and scattering problems from the basic principles of physical optics. Beginning with the fundamental differential and integral equations for wavefields, the text presents an exhaustive discussion on the extinction theorem as a non-local boundary condition ; this has been extensively employed for the rigorous solution of scattering and diffraction problems. There is also an in-depth presentation of the topic of scattering from rough surfaces, in particular, the phenomenon of enhanced backscattering, as well as a detailed development of the angular spectrum representation of fields leading to questions on non-diffraction beams. Of key interest in near field optical microscopy and nanooptics, the S-matrix theory based on the angular spectrum for propagating components and the recently discovered properties of the S-matrix for evanescent components of wavefields are considered. In addition, the book deals with the healing effect of phase conjugation on waves, and focuses on some applications concerning the relationship with time reversal. Readers will also find discussions on image recovery from partial information data (phase problems and super-resolution problem), as well as a chapter on the fundamentals of near field optical microscopy techniques, including the hot topic of propagation in negative index media.
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Fundamentals of the Physical Theory of Diffraction Pyotr Ya. Ufimtsev ... 1.3.2 Total Scattering Cross-Section 13 1.3.3 Optical Theorem 15 1.3.4 Introducing the Notion of "Shadow Radiation" 16 1.3.5 Shadow Contour Theorem and theTotal Scattering Cross-Section 21 1.3.6 Summary of Properties of Physical Optics Approximation 24 1.4 Nonuniform Component of Induced Surface Field 25 1.5 ...

This book presents a comprehensive tutorial on propagation, diffraction and scattering problems from the basic principles of physical optics. Beginning with the fundamental differential and integral equations for wavefields, the text presents an exhaustive discussion on the extinction theorem as a non-local boundary condition; this has been extensively employed for the rigorous...

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