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Sunday, July 26, 2020 | History

4 edition of Optical spectroscopy of glasses found in the catalog.

Optical spectroscopy of glasses

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Published by D. Reidel Pub. Co., Sold and distributed in the U.S.A. and Canada by Kluwer Academic Publishers in Dordrecht, Boston, Norwell, MA, U.S.A .
Written in English

    Subjects:
  • Glass -- Spectra.,
  • Glass -- Optical properties.

  • Edition Notes

    Includes bibliographies and index.

    Statementedited by I. Zschokke.
    SeriesPhysics and chemistry of materials with low-dimensional structures.
    ContributionsZschokke, I., 1933-
    Classifications
    LC ClassificationsQC464.G55 O68 1986
    The Physical Object
    Paginationix, 272 p. :
    Number of Pages272
    ID Numbers
    Open LibraryOL2724072M
    ISBN 109027722315
    LC Control Number86017712

    The history of spectroscopy began in the 17th century. New designs in optics, specifically prisms, enabled systematic observations of the solar spectrum. Isaac Newton first applied the word spectrum to describe the rainbow of colors that combine to form white light. During the early s, Joseph von Fraunhofer conducted experiments with dispersive spectrometers that . * (Habilitation) in Solid State Physics (dissertation “Structural-topological self-organization in network systems of chalcogenide glasses”, June 9, at Vlokh Insti.

    Their topics include lanthanide glass spectroscopy and fiber lasers, analysis of the laser transition and non-radiative properties of certain types of neodymium in novel fluorophosphates glasses, applications in integrated optical amplifiers, and a range of glasses doped with rare earth ions, including the synthesis and spectroscopic properties.   The book includes a historical overview by W. Alexander Gambling, FRS. Over 60 individually authored modules on the above-mentioned types of glass covering optical, thermal & mechanical properties, RE spectroscopy, optical fiber manufacture and applications in fiber amplifiers, fiber gratings, fiber lasers and optical switches.

    Summary The principle objective of this handbook is to provide a readily accessible source of information on the major fields of spectroscopy. Specifically, these fields are NMR, IR, Raman, UV (absorption and fluorescence), ESCA, X-Ray (absorption diffraction fluorescence), mass spectrometry, atomic absorption, flame photometry, emission spectrography, and flame . Eyeglasses - Shop + eyeglasses and new frames for specs, optical eye glasses, chashma & specs online in India at FREE Shipping Cash on Delivery 14 Days Return.


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Optical spectroscopy of glasses Download PDF EPUB FB2

Buy Optical Spectroscopy of Glasses (Physics and Chemistry of Materials with C:) on FREE SHIPPING on qualified orders. During the last fifteen years the field of the investigation of glasses has experienced a period of extremely rapid growth, both in the development of new theoretical ap­ proaches and in the application of new experimental techniques.

After these years of intensive experimental and theoretical work. Optical spectroscopic methods offer an important means to investigate glass structure and its associated dynamics. Moreover, they provide a set of powerful tools to evaluate material optical performance for a broad range of : Barrett G.

Potter. Dynamical theory of optical linewidths in glasses / S.K. Lyo --Optical spectroscopy of ions in inorganic glasses / William M. Yen --Model calculation of optical dephasing in glasses / P.

Reineker and K. Kassner --Structural relaxation processes in polymers and glasses as studied by high resolution optical spectroscopy / J.

Friedrich and D. In glasses we are con­ fronted with the full complexity of a disordered medium. The glassy state is characterised not only by the absence of any long-range order; in addition, a glass is in a non-equilibrium state and relaxation processes occur on widely.

Microscopic Theory -- 6. Conclusions -- Optical Spectroscopy of Ions in Inorganic Glasses -- 1. Introduction -- 2. Inorganic Glass Structure and Composition -- 3. Optical Properties of Impurity Centers in Inorganic Glass -- 4. Laser Spectroscopy of Ions in Glasses -- 5.

Concluding Remarks -- Model Calculation of Optical Dephasing in Glasses -- 1. Raman spectroscopy is an optical technique and therefore benefits from the educated eyes of the scholar/scientist to select pertin ent spots to be analysed in a Author: Philippe Colomban.

An introduction to the optical spectroscopy of inorganic solids Jose Solé, Luisa Bausa, Daniel Jaque This practical guide to spectroscopy and inorganic materials meets the demand from academia and the science community for an introductory text that introduces the different optical spectroscopic techniques, used in many laboratories, for.

Raman spectroscopy of glass usually does not provide specific structural information, but it can often identify the presence of terminal anions, like the non‐bridging oxygen (NBO or O NB) ions in oxide glasses, through the presence of typical high‐frequency peaks in the spectra.

Therefore, it is useful to combine theory with experimental Cited by: 2. Optical (absorption or photo-luminescence) and ESR spectroscopy can be used in the identification of the oxidation state and coordination of transition metal ions in glasses.

This chapter introduces infrared spectroscopy and its potential in glass studies with emphasis on glasses in bulk and thin film forms. It commences with a brief review of the basics on refractive index and dielectric function that allow defining the optical and dielectric properties measured in the by: 6.

Part one outlines the preparation methods and properties of chalcogenide glasses, including the thermal properties, structure, and optical properties, before going on to discuss mean coordination and topological constraints in chalcogenide network glasses, and the photo-induced phenomena in chalcogenide glasses.

Find many great new & used options and get the best deals for Physics and Chemistry of Materials with C: Matter Physics: Optical Spectroscopy of Glasses 1 (, Hardcover) at the best online prices at eBay.

Free shipping for many products. Luminescence spectroscopy, particularly employing spectral hole burning, has been used to investigate a wide variety of phenomena in solids, including impurity and defect structure, electron–nuclear interactions, spin–spin cross-relaxation, tunnelling processes, optical dephasing, spectral diffusion in glasses, electron–phonon coupling.

Joined the Department in Recipient of Richard M. Hawkins Award. Co-authored journal papers, 86 peer-reviewed; 3 chapters in books; 6 patents and inventions; + co.

Remote IR spectroscopy and imaging using flexible fibers will be realized for applications. Other future research areas which will inevitably be explored includes non-linear optical properties of these IR glasses. High-speed optical communication requires ultra-fast all-optical processing and switching by: Paperback.

Published: 29 April Pages | line illus. /8 x /4 inches. ISBN: Raman spectroscopy of glasses and melts is a powerful technique which can provide information about the silicate network connectivity via the study of Q n-species distribution and also on other tetrahedrally coordinated cations such as aluminium, phosphorus, ferric iron and ly, Raman spectroscopy of glasses and melts has focused on information.

Optical spectroscopy of silicates and glasses. Philippe Colomban and Linda C. Prinsloo The recent progress, in the use of optical/vibrational spectroscopy for the identification and understanding of the nanostructure of amorphous and crystalline silicates, is reviewed.

The focus of the discussion is on Raman spectroscopy and we present Cited by: Chemistry, Spectroscopy and Applications of Sol-Gel Glasses It seems that you're in USA.

Spectroscopy and Applications of Sol-Gel Glasses. Editors: Reisfeld, Renata, Jorgensen, Christian K. (Eds Optical properties of colorants or luminescent species in sol-gel glasses.

@article{osti_, title = {Optical properties of glass}, author = {Fanderlick, I.}, abstractNote = {The author deals in depth with reflection, refraction, absorption, scatter, polarization, birefringence, and interference (the effects of the interaction of radiation with glass).

The most significant optical phenomena have been approached from the points of view of theory. In optics, dispersion is the phenomenon in which the phase velocity of a wave depends on its frequency. Media having this common property may be termed dispersive mes the term chromatic dispersion is used for specificity.

Although the term is used in the field of optics to describe light and other electromagnetic waves, dispersion in the same sense can apply to .The book concludes with an overview of chalcogenide glasses as electrolytes for batteries. Chalcogenide glasses comprehensively reviews the latest technological advances and applications of chalcogenide glasses, and is an essential text for academics, materials scientists and electrical engineers working in the photonics and optoelectronics.