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Optics Software for Layout and Optimization
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Optics Software for Layout and Optimization : ウィキペディア英語版
Optics Software for Layout and Optimization
Optics Software for Layout and Optimization (OSLO) is an optical design program originally developed at the University of Rochester in the 1970s. The first commercial version was produced in 1976 by Sinclair Optics. Since then, OSLO has been rewritten several times as computer technology has advanced. In 1993, Sinclair Optics acquired the GENII program for optical design, and many of the features of GENII are now included in OSLO. Lambda Research Corporation (Littleton MA) purchased the program from Sinclair Optics in 2001.〔Dr. Edward Freniere., "Lambda Research Corp.: Establishing a Technology Bridge" http://www.lambdares.com/news_and_events/media_coverage/LambdaResearchCorp/〕
The OSLO software is used by scientists and engineers to design lenses, reflectors, optical instruments, laser collimators, and illumination systems. It is also used for simulation and analysis of optical systems using both geometrical and physical optics. In addition to optical design and analysis, OSLO provides a complete technical software development system including interactive graphics, math, and database libraries.
==Applications==
OSLO provides an integrated software environment that helps complete contemporary optical design. More than a lens design software, OSLO provides advanced tools for designing medical instrumentation, illuminations systems and telecommunications equipment, to name just a few typical applications. OSLO has been used in a multitude of optical designs including holographic systems,〔Rongsheng Tian; Charles S. Ih; K. Q. Lu., "Holographic optical system design using Super-Oslo", Proceedings of SPIE Volume: 1211 pp.90-98 (1990)〕 anastigmatic telescopes,〔Joel Herrera Vázquez; Sergio Vázquez y Montiel., "Optical design of a compact and anastigmatic telescope with three mirrors", Proceedings of SPIE volume 6342(2006)〕 gradient index optics,〔Paul K. Manhart; Xiaojie Xu, "Recent progress in macro axial gradient index optics (it's time to rethink gradients)", Proceedings of SPIE volume 2537 pp.250-260 (1995)〕 off-axis refractive/diffractive telescopes.〔Chongxi Zhou; Zhan Li; Dajian Lin; Chunlei Du, "Design of an off-axis infrared refractive/diffractive hybrid telescopic optical system", Proceedings of SPIE volume 2866 pp. 483-486 (1996)〕 the James Webb Space Telescope,〔Dr. Joseph M. Howard., "Optical modeling activities for NASA's James Webb Space Telescope (JWST): IV. Overview and introduction of MATLAB based toolkits used to interface with optical design software", Proceedings of SPIE volume 6668 (2007)〕 aspheric lenses,〔"Chieh-Jen Cheng; Jyh-Long Chern., "Design of aspheric lens to collimate and uniform irradiance of a light source with Lambertian angular distribution", Proceedings of SPIE volume 6342 (2006)〕 interferometers,〔Paul E. Murphy; Thomas G. Brown; Duncan T. Moore., "Optical vernier interferometry for aspheric metrology", Proceedings of SPIE volume 3676 pp. 643-652 (1999)〕 and time-varying designs.〔Curtis J. Harkrider; Duncan T. Moore., "Time-varying boundary condition diffusion for gradient-index design", Proceedings of SPIE volume 3482 pp. 780-788 (1998)〕

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