Field Guide to Physical Optics

Field Guide to Physical Optics PDF

Author: Daniel G. Smith

Publisher: SPIE-International Society for Optical Engineering

Published: 2013

Total Pages: 0

ISBN-13: 9780819485489

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Provides a concise overview of physical optics for easy reference, with a focus on information applicable to the field of optical engineering. Within this Field Guide, you will find formulae and descriptions of electromagnetic wave phenomena that are fundamental to the wave theory of light.

Field Guide to Geometrical Optics

Field Guide to Geometrical Optics PDF

Author: John E. Greivenkamp

Publisher: Society of Photo Optical

Published: 2004

Total Pages: 117

ISBN-13: 9780819452948

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This Field Guide derives from the treatment of geometrical optics that has evolved from both the undergraduate and graduate programs at the Optical Sciences Center at the University of Arizona. The development is both rigorous and complete, and it features a consistent notation and sign convention. This volume covers Gaussian imagery, paraxial optics, first-order optical system design, system examples, illumination, chromatic effects, and an introduction to aberrations. The appendices provide supplemental material on radiometry and photometry, the human eye, and several other topics.

Field Guide to Visual and Ophthalmic Optics

Field Guide to Visual and Ophthalmic Optics PDF

Author: Jim Schwiegerling

Publisher: SPIE-International Society for Optical Engineering

Published: 2004

Total Pages: 0

ISBN-13: 9780819456298

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Visual optics requires an understanding of both biology and optical engineering. This Field Guide assembles the anatomy, physiology, and functioning of the eye, as well as the engineering and design of a wide assortment of tools for measuring, photographing, and characterizing properties of the surfaces and structures of the eye. Also covered are the diagnostic techniques, lenses, and surgical techniques used to correct and improve human vision.

Field Guide to Digital Micro-optics

Field Guide to Digital Micro-optics PDF

Author: Bernard C. Kress

Publisher:

Published: 2014

Total Pages: 172

ISBN-13: 9781628411843

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Traditional macro-optics can be designed without complex design software tools. However, digital optics, especially wafer-scale micro-optics, require specific software and tools. There is often no analytical solution, and thus complex iterative optimization algorithms may be required. This book covers refractive and diffractive micro-optics, the iterative optimization process, and modeling and fabrication techniques crucial to this field. The ability to create hybrid systems capable of producing analog and digital functionality is also addressed.

Field Guide to Infrared Optics, Materials, and Radiometry

Field Guide to Infrared Optics, Materials, and Radiometry PDF

Author: Arnold Daniels

Publisher: SPIE-International Society for Optical Engineering

Published: 2018

Total Pages:

ISBN-13: 9781510618602

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"Field Guide to Infrared Optics, Materials, and Radiometry covers all aspects of IR optics, including monochromatic and chromatic optical aberrations as well as important concepts such as depth of focus, depth of field, hyperfocal distance, warm shields, aspheric surfaces, and kinoforms. It also provides a comprehensive introduction to the optical, mechanical, and thermal properties of infrared materials as well as the essentials of radiometry and sources necessary for the quantitative understanding of infrared signatures and flux transfer, spectral atmospheric transmittance, and path radiance"--

Physical Optics

Physical Optics PDF

Author: Sergeĭ Aleksandrovich Akhmanov

Publisher:

Published: 1997

Total Pages: 506

ISBN-13: 0198517955

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Providing a picture of modern physical optics as an expert would see it, this clear exposition of the most useful ideas of optics will be accessible to undergraduate students. This textbook covers both classical and modern optics and is based on a course offered by Moscow State University inrecent years - the main objective of which was to provide a comprehensive presentation of the fundamentals of the subject. Containing a much higher proportion of topical material than conventional textbooks the contents include electromagnetic theory of light, optical radiation physics and thephysics of interaction of radiation with matter. Among the contemporary topics discussed most comprehensively are lasers, nonlinear optics, and new methods of optical spectroscopy.

Principles of Physical Optics

Principles of Physical Optics PDF

Author: Charles A. Bennett

Publisher: Wiley

Published: 2008-01-09

Total Pages: 0

ISBN-13: 9780470122129

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Breathing a breath of fresh air into the field of optics, Principles of Physical Optics is the first new entry in the field in the last 20 years. It provides readers with a completely modern approach to the subject, covering a wide range of topics. This includes detailed discussions on geometric optics, superposition and interference, and diffraction. Readers will also find the latest information on lasers, optical imaging, polarization, and nonlinear optics.

Introduction to Modern Optics

Introduction to Modern Optics PDF

Author: Grant R. Fowles

Publisher: Courier Corporation

Published: 2012-04-25

Total Pages: 336

ISBN-13: 048613492X

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A complete basic undergraduate course in modern optics for students in physics, technology, and engineering. The first half deals with classical physical optics; the second, quantum nature of light. Solutions.

Principles of Physical Optics

Principles of Physical Optics PDF

Author: Albie Reid

Publisher:

Published: 2019-06-14

Total Pages: 258

ISBN-13: 9781682857373

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Physical optics is a branch of optics that studies optical phenomena, such as polarization, interference, diffraction, dispersion, scattering, etc. All these phenomena cannot be explained by using the approximations of geometric optics. In physical optics, the wave property of light is considered. Light waves are electromagnetic waves. The interaction of light with materials involves the modeling of both electric and magnetic fields of the light wave. When the propagation of light in systems cannot be solved analytically, numerical modeling techniques are used. These include the boundary element method, finite element method and the transmission-line matrix method. This book is a valuable compilation of topics, ranging from the basic to the most complex theories and principles in the field of physical optics. It aims to shed light on some of the unexplored aspects of this field. It aims to serve as a resource guide for students and experts alike and contribute to the growth of the discipline.