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materials science, multidisciplinary (18) 18
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industrial chemistry/chemical engineering (9) 9
inorganic chemistry (9) 9
materials science, general (7) 7
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Optical Materials, ISSN 0925-3467, 09/2015, Volume 47, pp. 251 - 255
•Nondestructive testing of inclusions in high-purity optical materials is examined.•3D laser ultramicroscopy is shown to be able to identify the inclusion... 
Optical losses | Optical fiber materials | Light scattering | Laser ultramicroscopy | Chalcogenide glasses | Inclusion characterization | MATERIALS SCIENCE, MULTIDISCIPLINARY | OPTICS | Equipment and supplies | Fiber optics
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. 18 - 22
The results of investigation of the impurity and phase inclusions as sources of non-selective losses in high-purity chalcogenide and tellurite glasses are... 
Optical losses | Optical fiber materials | Chalcogenide | Tellurite glasses | Light scattering | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS
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, 01/2018, Volume 480, pp. 3 - 7
It is found that the content of SiO2 inclusions in the As2S3 volume is increased during chalcogenide glass melting in silica glassware with subsequent cooling... 
Silica glass | Arsenic sulfide | Inclusions | Adhesion | Contamination | LASER | MATERIALS SCIENCE, MULTIDISCIPLINARY | OPTICAL-FIBERS | CHALCOGENIDE GLASSES | MATERIALS SCIENCE, CERAMICS
Journal Article
Journal of Luminescence, ISSN 0022-2313, 09/2016, Volume 177, pp. 275 - 279
The multi-stage method for the synthesis of high-purity Ge–As–Se–In–I glasses doped with Pr3+ ions is developed. It is based on the chemical distillation... 
Chalcogenide glass | Synthesis | Purification | Photoluminescence | Praseodymium | Optical fiber | OPTICS
Journal Article
Journal of Luminescence, ISSN 0022-2313, 09/2016, Volume 177, pp. 275 - 279
Journal Article
Journal of Luminescence, ISSN 0022-2313, 09/2016, Volume 177, p. 275
The multi-stage method for the synthesis of high-purity Ge-As-Se-In-I glasses doped with Pr.sup.3+ ions is developed. It is based on the chemical distillation... 
Indium
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 10/2019, Volume 521, p. 119505
The method for preparation of high-purity GeSe glasses with the low content of hydrogen and oxygen impurities is developed. The method includes following... 
Chalcogenide glass | Impurities | Properties | Mid-IR range | Preparation | HIGH-PURITY CHALCOGENIDE | MATERIALS SCIENCE, MULTIDISCIPLINARY | ARSENIC-SULFIDE | MATERIALS SCIENCE, CERAMICS
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 10/2013, Volume 377, pp. 220 - 224
The results of the preparation and investigation of a new class of materials for middle IR fiber lasers on the basis of chalcogenide glasses with microcrystal... 
Chalcogenide glass | As2S3 | ZnS(ZnSe):Cr | Composite | Optical fiber | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS
Journal Article
Journal of Luminescence, ISSN 0022-2313, 03/2017, Volume 183, p. 129
For the first time, high purity Ge-Sb-Se-In-I glasses doped with Pr.sup.3+ ions are prepared. The host Ge-Sb-Se-In-I glass samples are fabricated using a... 
Journal Article
Journal of Luminescence, ISSN 0022-2313, 03/2017, Volume 183, pp. 129 - 134
Journal Article
Journal of Luminescence, ISSN 0022-2313, 03/2017, Volume 183, pp. 129 - 134
For the first time, high purity Ge–Sb–Se–In–I glasses doped with Pr3+ ions are prepared. The host Ge–Sb–Se–In-I glass samples are fabricated using a... 
Purification | Limiting impurities | Mid-IR luminescence | Raman and IR spectroscopy | Ge–Sb–Se–In–I glass | Praseodymium | FIBER | RAMAN | ABSORPTION | OPTICS | CHALCOGENIDE GLASSES | Ge-Sb-Se-In-I glass | BULK GLASSES
Journal Article
Materials Research Bulletin, ISSN 0025-5408, 11/2018, Volume 107, pp. 430 - 437
[Display omitted] •Special pure GaxGe25As15Se60-x (x = 0; 1; 2; 3; 4; 5) glasses were prepared and investigated.•The glasses have high glass transition... 
Microstructure | Chalcogenide Ga-Ge-As-Se glasses | Preparation | Refractive index | Transmission | Fiber | THIN-FILMS | SYSTEM | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | PURITY CHALCOGENIDE GLASSES | RAMAN | IMPURITIES | AS2SE3 | REFRACTIVE-INDEX | RANGE | Analysis | Equipment and supplies | Fiber optics
Journal Article
Inorganic Materials, ISSN 0020-1685, 1/2019, Volume 55, Issue 1, pp. 81 - 84
This paper presents results of physical and computational experiments aimed at gaining insight into the behavior of silica impurity particles in two flowing... 
Chemistry | double crucible | nanoparticles | Materials Science, general | computational experiment | Inorganic Chemistry | arsenic sulfide fiber | Industrial Chemistry/Chemical Engineering | interface | physical experiment | MATERIALS SCIENCE, MULTIDISCIPLINARY | Sulfides | Building materials | Arsenic | Silica
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 06/2011, Volume 357, Issue 11-13, pp. 2366 - 2370
TeO -WO (TW), TeO -WO -La O (TWL), TeO -WO -La O -Bi O (TWLB) and TeO -ZnO-Na O-Bi O (TZNB) glasses were produced by high-purity oxide mixtures melting in... 
Transition metals | Absorption losses | High purity oxides | Tellurite glasses | Scattering losses | Hydroxyl groups
Journal Article
Inorganic Materials, ISSN 0020-1685, 03/2013, Volume 49, Issue 3, pp. 223 - 229
Journal Article
Optical Materials, ISSN 0925-3467, 10/2011, Volume 33, Issue 12, pp. 1911 - 1915
TeO -WO , TeO -WO -La O and TeO -WO -La O -Bi O glasses were produced by high-purity oxides mixtures melting in crucibles of gold or platinum in purified... 
Optical fibers | Optical losses | Hydroxyl groups | Tungstate-tellurite glasses | FIBER | MATERIALS SCIENCE, MULTIDISCIPLINARY | TELLURITE GLASSES | OPTICS
Journal Article
Journal of Optoelectronics and Advanced Materials, ISSN 1454-4164, 11/2011, Volume 13, Issue 11-12, pp. 1433 - 1436
Journal Article
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