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Design and Component Specifications for High Average Power Laser Optical Systems

Design and Component Specifications for High Average Power Laser Optical Systems
Author:
Publisher:
Total Pages:
Release: 1987
Genre:
ISBN:

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Laser imaging and transport systems are considered in the regime where laser-induced damage and/or thermal distortion have significant design implications. System design and component specifications are discussed and quantified in terms of the net system transport efficiency and phase budget. Optical substrate materials, figure, surface roughness, coatings, and sizing are considered in the context of visible and near-ir optical systems that have been developed at Lawrence Livermore National Laboratory for laser isotope separation applications. In specific examples of general applicability, details of the bulk and/or surface absorption, peak and/or average power damage threshold, coating characteristics and function, substrate properties, or environmental factors will be shown to drive the component size, placement, and shape in high-power systems. To avoid overstressing commercial fabrication capabilities or component design specifications, procedures will be discussed for compensating for aberration buildup, using a few carefully placed adjustable mirrors. By coupling an aggressive measurements program on substrates and coatings to the design effort, an effective technique has been established to project high-power system performance realistically and, in the process, drive technology developments to improve performance or lower cost in large-scale laser optical systems. 13 refs.


Performance and Production Requirements for the Optical Components in a High-average-power Laser System

Performance and Production Requirements for the Optical Components in a High-average-power Laser System
Author:
Publisher:
Total Pages:
Release: 1999
Genre:
ISBN:

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Optical components needed for high-average-power lasers, such as those developed for Atomic Vapor Laser Isotope Separation (AVLIS), require high levels of performance and reliability. Over the past two decades, optical component requirements for this purpose have been optimized and performance and reliability have been demonstrated. Many of the optical components that are exposed to the high power laser light affect the quality of the beam as it is transported through the system. The specifications for these optics are described including a few parameters not previously reported and some component manufacturing and testing experience. Key words: High-average-power laser, coating efficiency, absorption, optical components.


Harnessing Light

Harnessing Light
Author: National Research Council
Publisher: National Academies Press
Total Pages: 358
Release: 1998-09-25
Genre: Technology & Engineering
ISBN: 0309059917

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Optical science and engineering affect almost every aspect of our lives. Millions of miles of optical fiber carry voice and data signals around the world. Lasers are used in surgery of the retina, kidneys, and heart. New high-efficiency light sources promise dramatic reductions in electricity consumption. Night-vision equipment and satellite surveillance are changing how wars are fought. Industry uses optical methods in everything from the production of computer chips to the construction of tunnels. Harnessing Light surveys this multitude of applications, as well as the status of the optics industry and of research and education in optics, and identifies actions that could enhance the field's contributions to society and facilitate its continued technical development.


High Power Lasers - Science and Engineering

High Power Lasers - Science and Engineering
Author: R. Kossowsky
Publisher: Springer Science & Business Media
Total Pages: 661
Release: 2013-03-09
Genre: Science
ISBN: 9401587256

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In the thirty years since the invention of the CO2 gas laser, the major design issue has shifted from how to obtain the desired power level to how to achieve reliable operation. At the same time, the opening of many laser development facilities in the Former Soviet Union has allowed their achievements and design approaches to be understood and appreciated for the first time. Further, the industrial laser user community has identified a number of emerging applications at higher power levels (15-20 kW) than are attainable by most commercial devices. In High Power Lasers - Science and Engineering, the designers, developers and users of high-power gas laser systems discuss design approaches, methods of enhancing performance, new applications, and user requirements.


The Power- and Energy-handling Capability of Optical Materials, Components, and Systems

The Power- and Energy-handling Capability of Optical Materials, Components, and Systems
Author: Roger M. Wood
Publisher: SPIE Press
Total Pages: 138
Release: 2003
Genre: Science
ISBN: 9780819447432

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Annotation There is a maximum power and energy that you can put into or transmit through your optical system; in many cases, this maximum is well below the laser-induced damage threshold. This tutorial explains the factors and constraints that limit the power- and energy-handling capability of optical materials, components, and/or systems. Because the lasers coming off the production lines are much more stable, efficient, and controlled than in the past, today's engineers often do not have the insight into the technology as was required of first-generation laser engineers. However, important insights into the use and performance of the laser and optical systems can be lost unless we remind ourselves at periodic intervals of the problems our predecessors had to face.


Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 464
Release: 1994
Genre: Power resources
ISBN:

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