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Tuesday, July 21, 2020 | History

4 edition of Laser-induced damage in optical materials: 2002 found in the catalog.

Laser-induced damage in optical materials: 2002

and 7th International Workshop on Laser Beam and Optics Characterization : 34th Annual Boulder Damage Symposium : proceedings : 16-18 September, 2002, Boulder, Colorado

by Symposium on Optical Materials for High Power Lasers (34th 2002 Boulder, Colo.)

  • 223 Want to read
  • 19 Currently reading

Published by SPIE in Bellingham, Wash .
Written in English

    Subjects:
  • Optical materials -- Effect of radiation on -- Congresses.,
  • Laser materials -- Effect of radiation on -- Congresses.,
  • Thin films -- Effect of radiation on -- Congresses.,
  • Surfaces (Physics) -- Effect of radiation on -- Congresses.,
  • Laser beams -- Congresses.

  • Edition Notes

    Other titles34th Annual Boulder Damage Symposium, Laser beam and optics characterization
    Statementeditors, Gregory J. Exarhos ... [et al.] ; sponsored by Lawrence Livermore National Laboratory (USA) ; cooperating organizations, Center for High Technology Materials at the University of New Mexico (USA) ... [et al.] ; published by SPIE--the International Society for Optical Engineering.
    GenreCongresses.
    SeriesSPIE proceedings series -- v. 4932, Proceedings of SPIE--the International Society for Optical Engineering -- v. 4932.
    ContributionsExarhos, Gregory J., Giesen, Adolf., Weber, Horst, 1935-, Lawrence Livermore National Laboratory., University of New Mexico. Center for High Technology Materials., Society of Photo-optical Instrumentation Engineers., Wissenschaftliche Gesellschaft Lasertechnik., Stuttgart. Universität. Institut für Strahlwerkzeuge., International Workshop on Laser Beam and Optics Characterization (7th : 2002 : Boulder, Colo.)
    Classifications
    LC ClassificationsQC374 .S96 2002
    The Physical Object
    Paginationxxvii, 698 p. :
    Number of Pages698
    ID Numbers
    Open LibraryOL22565897M
    ISBN 100819447277

    The large-spot out-of-band irradiation of Ge wafers and subsequent evaluation is discussed in this paper. The wafers were irradiated with a high-power, .   In Laser-Induced Damage in Optical Materials: , – (International Society for Optics and Photonics, ). Demiryont H, Sites J, Geib K. Effects of oxygen content on the optical properties of tantalum .

      Laser-induced Damage in Optical Materials v by Gregory J. Exarhos, , available at Book Depository with free delivery worldwide. Roger M. Wood is the author of Laser-Induced Damage of Optical Materials ( avg rating, 0 ratings, 0 reviews, published ), optical Materials ( a.

    Laser induced damage threshold (fluence) Principle. According to DIN EN ISO and DIN EN ISO optical components are irradiated with pulsed laser light and the occurrence of damage is monitored online by scattering light detection. In case of tests in vacuum pressure detection is used in addition. Nagy, BJ, Vámos, L, Oszetzky, D, Rácz, P & Dombi, P , Femtosecond damage threshold at kHz and MHz pulse repetition rates. in GJ Exarhos, D Ristau, JA Menapace, MJ Soileau & VE Gruzdev (eds), 46th Annual Laser Damage Symposium Proceedings - Laser-Induced Damage in Optical Materials: , , Proceedings of SPIE - The International Society for Optical .


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Laser-induced damage in optical materials: 2002 by Symposium on Optical Materials for High Power Lasers (34th 2002 Boulder, Colo.) Download PDF EPUB FB2

Laser-Induced Damage in Optical Materials | Ristau, Detlev | download | B–OK. Download books for free. Find books. Dedicated to users and developers of high-powered systems, Laser-Induced Damage in Optical Materials focuses on the research field of laser-induced damage and explores the significant and steady growth of applications for high-power lasers in the academic, industrial, and military n by renowned experts in the field, this book concentrates on the major topics of laser-induced 5/5(1).

Book Description. Dedicated to users and developers of high-powered systems, Laser-Induced Damage in Optical Materials focuses on the research field of laser-induced damage and explores the significant and steady growth of applications for high-power lasers in the academic, industrial, and military n by renowned experts in the field, this book.

Dedicated to users and developers of high-powered systems, Laser-Induced Damage in Optical Materials focuses on the research field of laser-induced damage and explores the significant and steady growth of applications for high-power lasers in the academic, industrial, and military arenas. Written by renowned experts in the field, this book concentrCited by: The book is Laser-Induced Damage in Optical Materials, edited by Detlev Ristau, CRC Press/Taylor and Francis Group, ISBN This book, which is divided into four sections (see below), should be of interest to anyone working in the LID field, as well as those who are developing very-high-energy and power laser systems.

The laser power handling capacities of optical systems are determined by the physical properties of their component materials. At low intensity levels these factors are not important, but an understanding of damage mechanisms is fundamental to good design of laser products operating at high power.

Laser Induced Damage of Optical Materials presents. In book: Laser-induced damage in optical materials, Chapter: Defect-induced damage, Publisher: CRC Press, Editors: Detlev Ristau, pp PROCEEDINGS VOLUME Laser-Induced Damage in Optical Materials: and 7th International Workshop on Laser Beam and Optics Characterization.

The laser power handling capacities of optical systems are determined by the physical properties of their component materials. At low intensity levels these factors are not important, but an understanding of damage mechanisms is fundamental to good design of laser products operating at high power.

Laser Induced Damage of Optical Materials presents. Main Laser-Induced Damage of Optical Materials Laser-Induced Damage of Optical Materials Alexander J Glass, Arthur Henry Guenther, American Society for Testing and Materials., United States. Announcing SPIE Laser Damage Free Digital Forum.

This is the technical meeting where scientists and engineers collaborate on high-power/high-energy lasers as well as materials and thin films, durability, properties modeling, testing, and component fabrication, now available in.

Laser Induced Damage of Optical Materials presents a comprehensive overview of the damage processes that occur at high laser intensity levels and explains how these factors limit the energy handling capabilities of optical systems.

The first two chapters of the book review basic EM theory, and consider optical effects, including absorption and. Laser induced damage in optical materials: proceedings of a symposium sponsored by the American Society for Testing and Materials and by the National Bureau of Standards ASTM special technical publication Proceedings of SPIE--the International Society for Optical Engineering: Authors: United States.

The main theme of the book is laser-induced damage, which can occur in the bulk, on the surface or in the coating of optical components, when higher laser powers are used. The book covers essential themes on high power laser coatings and materials against the background of fundamental damage mechanisms.

Get this from a library. Laser-induced damage in optical materials 34th Annual Boulder Damage Symposium, September,Boulder, Colorado. [Gregory J Exarhos; Adolf Giesen; Horst Weber; Society of Photo-optical Instrumentation Engineers.; Lawrence Livermore National Laboratory.; University of New Mexico.

Center for High Technology Materials. The potential of intense laser pulses to cause damage is often based on nonlinear processes which increase the fraction of absorbed energy far above the value which would be experienced at lower intensity levels.

In particular, many media are transparent at low or moderate optical intensities, but become strongly absorbing once the threshold for laser-induced breakdown is. Get this from a library. Laser-induced damage in optical materials, and 7th International Workshop on Laser Beam and Optics Characterization: 34th Annual Boulder Damage Symposium: proceedings: September,Boulder, Colorado.

[Gregory J Exarhos; Adolf Giesen; H Weber; Lawrence Livermore National Laboratory.; University of New. Event: XXXIV Annual Symposium on Optical Materials for High Power Lasers: Boulder Damage Symposium,Boulder, CO, United States.

ARTICLE CITED BY DOWNLOAD PDF SAVE TO MY Proc. SPIELaser-Induced Damage in Optical Materials: and 7th International Workshop on Laser Beam and Optics Characterization. Emphasizes a morphological and phenomenological approach to the study of laser-induced damage.

Presents a pictorial record of many of the different phenomena observed, as well as a discussion of scaling laws, cumulative damage and measurement techniques.

Helpful appendices provide typical damage thresholds for numerous optical materials over a wide range of. This book provides an overview of the laser-damage phenomena occurring in the bulk and on the surface of optical components.

Ristau’s selection of diverse topics offers a comprehensive overview on recent developments in this area of research, which has a lot of applications in laser technology and production of photonics and optical components, materials. The laser power handling capacities of optical systems are determined by the physical properties of their component materials.

At low intensity levels these factors are not important, but an understanding of damage mechanisms is fundamental to good design of laser products operating at high power. Laser Induced Damage of Optical Materials presents a comprehensive overview of the damage.

Laser-induced damage in optical materials differs from laser-induced ablation of materials used in various applications (such as micromachining) by the fact that it is defect driven and occurs at.The Seventh ERDA-ASTM-ONR-NBS Symposium on Laser Induced Damage in Optical Materials was held at the National Bureau of Standards in Boulder, Colorado, on 29–31 July These Symposia are held as part of the activities in ASTM Subcommittee II on Lasers and Laser Materials, which is charged with the responsibilities of formulating standards and test procedures for laser materials.