Scalar Diffraction from a Circular Aperture

Scalar Diffraction from a Circular Aperture by Charles J. Daly, published by Springer US on July 13, 2013, is a comprehensive exploration of a significant problem in various scientific disciplines. This edition spans 175 pages and is presented in English. The book addresses scalar diffraction, a topic relevant to optics, acoustics, electromagnetics, and ultrasonics, highlighting its persistent challenges and the novel insights that each generation of researchers contributes to the field.
Readers will find that the text emphasizes ultrasonic diffraction while also providing general results applicable to broader contexts. The book includes discussions on mirror-image diffraction, autoconvolution diffraction, and both coherent and incoherent averaging. Through examples from ultrasonic imaging, it develops a theory that integrates over a century of research on this topic. The synthesis of mathematics, physical optics, and linear systems theory makes this work valuable for engineers, scientists, mathematicians, and students engaged in optics, antenna design, biomedical engineering, and related fields.
Official synopsis Publisher
Scalar diffraction from a circular aperture is a ubiquitous problem that arises in a variety of disciplines, such as optics (lenses), acoustics (speakers), electromagnetics (dish antennas), and ultrasonics (piston transducers). The problem endures despite centuries of research because each new generation of researchers rediscovers it and adds some novel insight or new result to the existing literature. Scalar Diffraction from a Circular Aperture promises a few new results and several novel insights, particularly with regard to spatial averaging. Although the text emphasizes ultrasonic diffraction, the results and insights developed are general and may be applied to the many practical problems involving scalar diffraction from a circular aperture.
Included are novel insights on mirror-image diffraction, autoconvolution diffraction, and coherent and incoherent averaging. Examples from ultrasonic imaging, a coherent imaging modality, are used to develop a fairly general theory that connects over a century of research on scalar diffraction from a circular aperture. The material is based on a synthesis of mathematics, physical optics, linear systems theory, and scalar diffraction theory. Thus, engineers, scientists, mathematicians, and students working in optics, acoustics, antenna design, biomedical engineering, non-destructive testing, and astronomy will find Scalar Diffraction from a Circular Aperture interesting, provocative, and useful.
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