Goodman | Introduction to Fourier Optics | Buch | 978-0-9747077-2-3 | sack.de

Buch, Englisch, 528 Seiten, Format (B × H): 195 mm x 242 mm, Gewicht: 1036 g

Goodman

Introduction to Fourier Optics


3. Revised Auflage 2005
ISBN: 978-0-9747077-2-3
Verlag: W.H.Freeman & Co Ltd

Buch, Englisch, 528 Seiten, Format (B × H): 195 mm x 242 mm, Gewicht: 1036 g

ISBN: 978-0-9747077-2-3
Verlag: W.H.Freeman & Co Ltd


This textbook deals with fourier analysis applications in optics, and in particular with its applications to diffraction, imaging, optical data processing, holography and optical communications. Fourier analysis is a universal tool that has found application within a wide range of areas in physics and engineering and this third edition has been written to help your students understand the complexity of a subject that can be challenging to grasp at times.
Chapters cover foundations of scalar diffraction theory, Fresnel and Fraunhofer diffraction moving onto Wave-Optics Analysis of Coherent Optical Systems and Wavefront Modulation. Joseph Goodman’s work in Electrical Engineering has been recognised by a variety of awards and honours, so his text is able to guide students through a comprehensive introduction into Fourier Optics.

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Autoren/Hrsg.


Weitere Infos & Material


1 Introduction.- 2 Fourier Analysis in Two Dimensions.- 3 Foundations of  Scalar Diffraction Theory.- 4 Fresnel and Fraunhofer Diffraction.- 5  Wave-Optics Analysis of Coherent Optical Systems.- 6 Frequency Analysis of  Optical Imaging Systems.- 7 Wavefront Modulation.- 8 Analog Optical  Information Processing.- 9 Holography.- 10 Fourier Optics in Optical  Communications.- A Delta Functions and Fourier Transform Theorems B  Introduction to Paraxial Geometrical Optics C Polarization and Jones  Matrices D The Grating Equation.- Bibliography.- Index.


Joseph W. Goodman held the William Ayer Chair in Electrical Engineering at Stanford, and also served in several administrative posts, including Chair of the Department of Electrical Engineering, and Senior Associate Dean of Engineering for Faculty Affairs. He is now the William Ayer Professor Emeritus. His work has been recognized by a variety of awards and honors, including the F.E. Terman Award of the American Society for Engineering Education, the Dennis Gabor Award of the International Society for Optical Engineering (SPIE), the Max Born Award, the Esther Beller Hoffman Award, the Ives Medal from the Optical Society of America, and the Education Medal of the Institute of Electrical and Electronics Engineers. He is a member of the National Academy of Engineering and has served as president of the Optical Society of America and the International Commission for Optics.



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