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materials science, multidisciplinary (56) 56
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Journal of Non-Crystalline Solids, ISSN 0022-3093, 10/2013, Volume 377, pp. 225 - 230
The main directions of investigations and technological developments for improvement of technical and operational characteristics of optical fibers from... 
Optical fibers | Chemical-distillation purification | Infrared transmission | Chalcogenide glasses | Ultra-low impurity content | GLASS SYSTEM | MATERIALS SCIENCE, MULTIDISCIPLINARY | SE GLASS | OPTICAL-FIBERS | MATERIALS SCIENCE, CERAMICS | Fiber optics
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 11/2017, Volume 475, pp. 1 - 9
The paper gives the recent achievements on the development of chalcogenide glasses and fibers with various functional properties. The current methods for... 
Methods of purification | Optical losses | Photonic applications | Mid-IR fibers | Chalcogenide glasses | Luminescence | SYSTEM | MATERIALS SCIENCE, MULTIDISCIPLINARY | MU-M | VOLATILE IODIDES | TE GLASSES | MATERIALS SCIENCE, CERAMICS | AS-S-SE | STEP-INDEX FIBER | ACTIVE MIDINFRARED OPTICS | SILICA-GLASS | INFRARED LUMINESCENCE
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2018, Volume 480, pp. 8 - 12
The [GeS ] I ( = 0 ÷ 10) glasses are prepared by the reaction of germanium, sulfur and germanium(IV) iodide in vacuumed silica-glass ampoules at a temperature... 
Stability against crystallization | Chalcoiodide glasses | Ge-S-I | Preparation | Mid-IR transmission
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2018, Volume 480, pp. 3 - 7
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2018, Volume 480, pp. 8 - 12
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 02/2017, Volume 457, p. 60
The Ga.sub.5[GeS.sub.x ].sub.85I.sub.10 glasses with x =1.5, 1.7, 2.0, 2.3 and 2.6 are prepared; their thermal and optical properties and stability against... 
Annealing | Optical properties
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 08/2019, Volume 517, p. 70
For middle infrared fiber-optic evanescent wave spectroscopy, the single-index Ge.sub.20Se.sub.80 and Ge.sub.26As.sub.17Se.sub.25Te.sub.32 glass fibers are... 
Analysis | Equipment and supplies | Fiber optics
Journal Article
Journal of Luminescence, ISSN 0022-2313, 05/2019, Volume 209, pp. 225 - 231
Special pure 1300 ppmw Pr(3+)-doped Ga Ge As Se glass is prepared; its microstructure, impurity content, thermal, crystallization, optical and... 
Ga-Ge-As-Se-Pr glass | Raman scattering spectroscopy | Mid-IR photoluminescence, emission lifetime | Preparation | Properties
Journal Article
Journal of Luminescence, ISSN 0022-2313, 05/2019, Volume 209, p. 225
Special pure 1300 ppmw Pr(3+)-doped Ga.sub.3Ge.sub.31As.sub.18Se.sub.48 glass is prepared; its microstructure, impurity content, thermal, crystallization,... 
Photoluminescence | Raman spectroscopy
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 10/2013, Volume 377, p. 220
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 03/2020, Volume 531
The adhesive strength of chalcogenide Ge Se (15 ≤   ≤ 26) glasses to silica glass is studied by the method of normal detachment depending on germanium content,... 
Ge–Se chalcogenide glasses | Preform | Glass formation | Adhesion strength
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 03/2020, Volume 531, p. 119857
Journal Article
Journal of Luminescence, ISSN 0022-2313, 12/2018, Volume 204, pp. 154 - 156
Luminescence intensity dependences on the laser pump powers have been studied for core-clad Pr-doped Ge-As-Se-Ga(In,I) glass fibers in the 2.4–6 µm spectral... 
Chalcogenide glass fiber | Optical losses | Pump power | Luminescence | Praseodymium | CHALCOGENIDE-GLASS | OPTICS | DY3 | Lasers | Analysis
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 09/2016, Volume 448, pp. 11 - 15
Samples of arsenic-rich [Formula presented] glasses with the low content of limiting impurities are prepared; their transmission, Raman spectra and thermal... 
Optical losses | Arsenic selenide | Purification | Impurities | Glass | Core-clad fiber
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 2019, Volume 139, Issue 2, pp. 1443 - 1452
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 03/2015, Volume 411, p. 40
GeSI.sub.2 and Ge.sub.2S.sub.3I.sub.2 glasses are prepared by interaction of germanium(IV) iodide, germanium and sulfur in evacuated silica-glass ampoules at... 
Metallic glasses | Sulfur compounds | Analysis
Journal Article
Optical Materials, ISSN 0925-3467, 10/2016, Volume 60, pp. 438 - 442
The glasses of [GeSe ] I (  = 1, 3, 5, 8, 10) compositions are prepared; their thermal properties, transparency in the mid-IR range and stability against... 
Ge-Se-I | Chalcogenide glass | Impurities | Properties | Optical fiber | Sensor
Journal Article
Journal of Luminescence, ISSN 0022-2313, 02/2016, Volume 170, pp. 37 - 41
Glass materials with high emission characteristics and low content of limiting impurities are required for creation of devices for middle infrared (mid-IR)... 
Chalcogenide glass | Purification | Limiting impurities | Photoluminescence | Ga–Ge–Sb–Se | Praseodymium | Ga-Ge-Sb-Se | FIBER | OPTICS | BULK GLASSES | Emissions (Pollution)
Journal Article
Optical Materials, ISSN 0925-3467, 01/2018, Volume 75, p. 525
To access, purchase, authenticate, or subscribe to the full-text of this article, please visit this link: http://dx.doi.org/10.1016/j.optmat.2017.11.012 The... 
Journal Article
Optical Materials, ISSN 0925-3467, 10/2017, Volume 72, p. 654
[ETH]AaAeAeA ore-clad fibers on the basis of high-purity 1300 ppmw Pr(3+)-dop Ga-Ge-As-Se and 2000 ppmw Pr(3+)-doped In-Ge-As-Se-I glasses have been prepared.... 
Photoluminescence
Journal Article
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