This book covers a broad range of the major topics of classical optics, in the form of 37 self-contained chapters. The chapters in the first half of the book deal primarily with the basic concepts of optics, while those in the second half describe how these concepts can be used in a variety of technological applications.
\3hhM}6)DM In each chapter, Professor Mansuripur introduces and develops a specialized topic in a comprehensive, clear and pedagogical style. The mathematical content is kept to a minimum as the book aims to provide the reader with insightful discussions of optical phenomena, at a level which is both accessible and interesting. This is aided by the numerous illustrations throughout in the form of diagrams, graphs and powerful computer simulation images. Topics covered include classical diffraction theory, optics of crystals, peculiarities of polarized light, thin-film multilayer stacks and coatings, geometrical optics and ray-tracing, various forms of optical microscopy, interferometry, coherence, holography, and nonlinear optics.
gk"S`1> As such, this book will constitute the ideal companion text for graduatelevel courses in optics, providing supplementary reading material for teachers and students alike. Industrial scientists and engineers developing modern optical systems will also find it an invaluable resource.
a 9(1 6k This book covers a broad range of the major topics of classical optics, in the form of 37 self-contained chapters. The chapters in the first half of the book deal primarily with the basic concepts of optics, while those in the second half describe how these concepts can be used in a variety of technological applications.
-z-58FLlO In each chapter, Professor Mansuripur introduces and develops a specialized topic in a comprehensive, clear and pedagogical style. The mathematical content is kept to a minimum as the book aims to provide the reader with insightful discussions of optical phenomena, at a level which is both accessible and interesting. This is aided by the numerous illustrations throughout in the form of diagrams, graphs and powerful computer simulation images. Topics covered include classical diffraction theory, optics of crystals, peculiarities of polarized light, thin-film multilayer stacks and coatings, geometrical optics and ray-tracing, various forms of optical microscopy, interferometry, coherence, holography, and nonlinear optics.
!r,ZyJU As such, this book will constitute the ideal companion text for graduatelevel courses in optics, providing supplementary reading material for teachers and students alike. Industrial scientists and engineers developing modern optical systems will also find it an invaluable resource.
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3o%JJIn& jW}n6w5 Preface
p)(mF"\8= Introduction
KN'l/9. 1 Abbe's sine condition
`Yn^ -W 2 Fourier optics
)Mx[;IwE 3 Effect of polarization on diffraction in systems of high numerical aperture
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+M/04 5 Coherent and incoherent imaging
U{q6_z|c 6 First-order temporal coherence in classical optics
1uG?R 7 The van Cittert-Zernike theorem
57'=Qz52 8 Partial polarization,Stokes parameters,and the Poincare sphere
:+|b7fF 9 What in the world are surface plasmons?
43W>4fsc 10 The Faraday effect
?"$W=*P\o 11 The magneto-optical Kerr effect
?C(Z\"IX 12 Fabry-Perot etalons in polarized light
v(3nBZHv_! 13 The Ewald-Oseen extinction theorem
`o8b\p\zn 14 Reciprocity in classical linear optics
kzZtKN9Az 15 Linear optical vortices
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`d(?1 16 Geometric-optical rays,Poynting‘s vector,and the field momenta
!u.{<51b 17 Diffraction gratings
Hv>A$x$q 18 The Talbot effect
hV;Tm7I2 19 Some quirks of total internal reflection
"!i7U2M' 20 Evanescent coupling
p#HPWW" 21 Internal and external conical refraction
pv+FPB 22 The method of Fox and Li
<T[%03 23 The beam propagation method
5YUn{qtD 24 Michelson's stellar interferometer
f&bY=$iff 25 Bracewell's interferometric telescope
j01.`G7Q 26 Scanning optical microscopy
[-f0s;F1% 27 Zernike's method of phase contrast
'm# -)R! 28 Polarization microscopy
>|KfO> 29 Nomarski's differential interference contrast microscope
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