This comprehensive and self-contained text presents the fundamentals of optical imaging from the viewpoint of both ray and wave optics, within a single volume. Comprising three distinct parts, it opens with an introduction to electromagnetic theory, including electromagnetic diffraction problems and how they can be solved with the aid of standard numerical methods such as RCWA or FDTD. The second part is devoted to the basic theory of geometrical optics and the study of optical aberrations inherent in imaging systems, including large-scale telescopes and high-resolution projection lenses. A detailed overview of state-of-the-art optical system design provides readers with the necessary tools to successfully use commercial optical design software. The final part explores diffraction theory and concludes with vectorial wave propagation, image formation and image detection in high-aperture imaging systems. The wide-ranging perspective of this important book provides researchers and professionals with a comprehensive and rigorous treatise on the theoretical and applied aspects of optical imaging.
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Product Details
Weight: 1810g
Dimensions: 192 x 254mm
Publication Date: 02 May 2019
Publisher: Cambridge University Press
Publication City/Country: United Kingdom
Language: English
ISBN13: 9781108428088
About Joseph BraatPeter Török
Joseph Braat is Emeritus Professor of Optics at Technische Universiteit Delft The Netherlands and a Fellow of the Dutch Royal Academy of Arts and Sciences. Previously he was based at the Philips Research Laboratories in Eindhoven where he worked on optical disc systems for video and audio recording and on high-resolution optical lithography. He was Co-Founder of the European Optical Society and his further research interests are diffraction theory astronomical imaging and optical metrology. Peter Török is Professor of Optical Physics at the Nanyang Technological University Singapore and at Imperial College of Science Technology and Medicine London. His research is focused on the theory of diffraction focusing and microscopy with particular emphasis on confocal microscopy spectroscopic imaging and polarisation. Throughout the years he has taught vector calculus electromagnetism optical imaging and optical design theory.