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Fourier Optics and Computational Imaging

Title
Fourier Optics and Computational Imaging [electronic resource] / by Kedar Khare, Mansi Butola, Sunaina Rajora.
ISBN
9783031183539
Edition
2nd ed. 2023.
Publication
Cham : Springer International Publishing : Imprint: Springer, 2023.
Physical Description
1 online resource (XV, 294 p.) 121 illus., 59 illus. in color.
Local Notes
Access is available to the Yale community.
Access and use
Access restricted by licensing agreement.
Summary
The book is designed to serve as a textbook for advanced undergraduate and graduate students enrolled in physics and electronics and communication engineering and mathematics. The book provides an introduction to Fourier optics in light of new developments in the area of computational imaging over the last couple of decades. There is an in-depth discussion of mathematical methods such as Fourier analysis, linear systems theory, random processes, and optimization-based image reconstruction techniques. These techniques are very much essential for a better understanding of the working of computational imaging systems. It discusses topics in Fourier optics, e.g., diffraction phenomena, coherent and incoherent imaging systems, and some aspects of coherence theory. These concepts are then used to describe several system ideas that combine optical hardware design and image reconstruction algorithms, such as digital holography, iterative phase retrieval, super-resolution imaging, point spread function engineering for enhanced depth-of-focus, projection-based imaging, single-pixel or ghost imaging, etc. The topics covered in this book can provide an elementary introduction to the exciting area of computational imaging for students who may wish to work with imaging systems in their future careers.
Variant and related titles
Springer ENIN.
Other formats
Printed edition:
Printed edition:
Printed edition:
Format
Books / Online
Language
English
Added to Catalog
February 22, 2023
Contents
Introduction
Fourier series and transform
Sampling Theorem
Operational introduction to Fast Fourier Transform
Linear systems formalism and introduction to inverse problems in imaging
Constrained optimization methods for image recovery
Random processes
Geometrical Optics Essentials
Wave equation and introduction to diffraction of light
The angular spectrum method. .
Also listed under
Butola, Mansi. author.
Rajora, Sunaina. author.
SpringerLink (Online service)
Citation

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