Optical Design Fundamentals for Infrared Systems
Title | Optical Design Fundamentals for Infrared Systems PDF eBook |
Author | Max J. Riedl |
Publisher | SPIE Press |
Pages | 206 |
Release | 2001 |
Genre | Science |
ISBN | 9780819440518 |
The practical, popular 1995 tutorial has been thoroughly revised and updated, reflecting developments in technology and applications during the past decade. New chapters address wave aberrations, thermal effects, design examples, and diamond turning.
Diffractive Optics
Title | Diffractive Optics PDF eBook |
Author | Donald C. O'Shea |
Publisher | SPIE Press |
Pages | 266 |
Release | 2004 |
Genre | Science |
ISBN | 9780819451712 |
This book provides the reader with the broad range of materials that were discussed in a series of short courses presented at Georgia Tech on the design, fabrication, and testing of diffractive optical elements (DOEs). Although there are not long derivations or detailed methods for specific engineering calculations, the reader should be familiar and comfortable with basic computational techniques. This text is not a 'cookbook' for producing DOEs, but it should provide readers with sufficient information to assess whether this technology would benefit their work, and to understand the requirements for using the concepts and techniques presented by the authors.
Infrared Optics and Zoom Lenses
Title | Infrared Optics and Zoom Lenses PDF eBook |
Author | Allen Mann |
Publisher | SPIE Press |
Pages | 184 |
Release | 2009 |
Genre | Photography |
ISBN | 0819476676 |
Ten years after the publication of Infrared Optics and Zoom Lenses, this text is still the only current publication devoted exclusively to infrared zoom lenses. This updated second edition includes 18 new refractive and reflective infrared zoom systems, bringing the total number of infrared zoom optical systems to 41 systems. Other additions include a section on focal plane arrays and a new closing chapter specifically devoted to applications of infrared zoom lenses. Coverage of wavelength region has been expanded to include the near infrared. Additional topics include an examination of the importance of principal planes, methods for athermalization by means of computer glass substitution, and global optimization techniques for zoom lens design.
Optical Communications Rules of Thumb
Title | Optical Communications Rules of Thumb PDF eBook |
Author | John Lester Miller |
Publisher | McGraw Hill Professional |
Pages | 450 |
Release | 2002-12-11 |
Genre | Technology & Engineering |
ISBN | 0071500901 |
This engineering tool provides over 200 time and cost saving rules of thumb--short cuts, tricks, and methods that optical communications veterans have developed through long years of trial and error. * DWDM (Dense Wavelength Division Multiplexing) and SONET (Synchronous Optical NETwork) rules * Information Transmission, fiber optics, and systems rules
Infrared Antennas and Resonant Structures
Title | Infrared Antennas and Resonant Structures PDF eBook |
Author | Javier Alda |
Publisher | SPIE-International Society for Optical Engineering |
Pages | 0 |
Release | 2017 |
Genre | Electromagnetism |
ISBN | 9781510613584 |
Explains the basics of electromagnetism applicable to the interaction of light with metallic structures having a size comparable to the wavelength, then discusses the special behaviour of metals; how to model, design, and validate through simulation of the proposed geometries; how to fabricate the most promising device designs; and various characterization techniques.
MID-INFRARED FIBER PHOTONICS
Title | MID-INFRARED FIBER PHOTONICS PDF eBook |
Author | Stuart Jackson |
Publisher | Woodhead Publishing |
Pages | 840 |
Release | 2021-11-26 |
Genre | Technology & Engineering |
ISBN | 0128180188 |
Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess combines the latest glass chemistry, fibre fabrication and post processing techniques to provide a comprehensive reference on the fundamental science and latest research in fibre photonics for the mid-infrared range. The book systematically reviews the key glass materials systems including fluorides, chalcogenides, and oxides. Each materials chapter includes discussion of composition, structure, thermal, optical and mechanical properties, extrinsic and intrinsic loss mechanisms, materials preparation and purification techniques. Then Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess covers the most relevant fabrication, post-processing, and spectroscopy techniques. Fibre sources are also addressed including fibre sources for continuous wave emission, pulsed emission, and broadband emission. The book concludes with a brief overview of important medical, sensing and defence applications. - Systematic coverage of the most relevant materials for mid-infrared fibre photonics including discussion of composition, structure, thermal, optical and mechanical properties, loss mechanisms, materials preparation and purification techniques - Reviews the key fabrication and processing techniques of mid-infrared fibre technologies - Addresses the important medical, sensing and defence applications
Chalcogenide Glasses for Infrared Optics
Title | Chalcogenide Glasses for Infrared Optics PDF eBook |
Author | A. Ray Hilton |
Publisher | McGraw Hill Professional |
Pages | 300 |
Release | 2010-01-25 |
Genre | Technology & Engineering |
ISBN | 0071596984 |
Cutting-edge techniques for yielding high-quality chalcogenide glasses This pioneering work describes the technology, developed over a 50-year period, to utilize chalcogenide glasses as infrared optical materials. Methods for qualitatively identifying chalcogenide glass compositions and producing high-purity homogeneous glass are discussed. Chalcogenide Glasses for Infrared Optics includes unique production techniques developed through the author's work at both Texas Instruments (TI) and Amorphous Materials, Inc. (AMI). The production of vacuum float zoned silicon, gallium arsenide, and cadmium telluride, all useful in infrared technology, is explained. The book highlights examples of how glass composition can be changed to enhance a particular property. Coverage includes: Transmission of light by solids Physical properties of chalcogenide glasses Glass production Careful characterization of glass properties Conventional lens fabrication--spherical surfaces Molding of unconventional aspheric lenses with diffractive surfaces Glass processes for other applications IR imaging bundles made from chalcogenide glass fibers Production of infrared crystalline materials at AMI Development of an automatic ellipsometer system at TI