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Rare-Earth-Doped Low Phonon Energy Glasses for Photonic Applications

Rare-Earth-Doped Low Phonon Energy Glasses for Photonic Applications

          
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About the Book

The main objective of the present research work is to identify efficient glasses and glass ceramics as gain media for the development of lasers and optical amplifiers. Therefore, it is more important to select a host material having the lowest phonon energy. Oxyfluorosilicate glasses containing metal fluorides received much attention as they can exhibit combined properties of oxides and fluorides as well as to minimize the phonon energy of the host glasses. These glasses present the lowest phonon energy among oxide glasses, which increases the quantum efficiency from excited states of rare-earth ions in these matrices and make them promising materials for developing more efficient lasers and fibre optic amplifiers. In this book, we also presents the McCumber's and Judd-Ofelt theory. From the Judd-Ofelt theory, we can evaluate the Judd-Ofelt (JO) intensity parameters (Ωλ), effective bandwidths (Δλeff), radiative transition probabilities (AR), stimulated emission cross-sections (σemi ) and branching ratios (βR) for the luminescence levels of Oxyfluorosilicate glasses.


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Product Details
  • ISBN-13: 9786139961979
  • Publisher: KS Omniscriptum Publishing
  • Publisher Imprint: LAP Lambert Academic Publishing
  • Height: 229 mm
  • No of Pages: 148
  • Spine Width: 9 mm
  • Width: 152 mm
  • ISBN-10: 6139961971
  • Publisher Date: 27 Nov 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 227 gr

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