Thermal properties of ternary Ge–Sb–Se chalcogenide glass for use in molded lens applications
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- Type
- article
- Published
- 2016-01-01
- Cited by
- 40
- References
- 29
- OpenAlex
- https://openalex.org/W2022367273
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96158765
Keywords
Softening point, Materials science, Ternary operation, Chalcogenide, Glass transition
References
- On the structural phase transformations in GexSb40−xSe60 glasses
- Microhardness, indentation toughness, elasticity, plasticity, and brittleness of Ge–Sb–Se chalcogenide glasses
- Covalent bond approach to the glass-transition temperature of chalcogenide glasses
- Volumetric effect of topology in chalcogenide glass systems
- Electrical conductivity studies on families of glasses of the GeSbSe system
- Experimental studies of the Ge-Sb-Se system
- Effect of the substitution of S for Se on the structure of the glasses in the system Ge0.23Sb0.07S0.70−xSex
- Influence of the Ga addition on optical properties of Pr in Ge–Sb–Se glasses
- Topology of covalent non-crystalline solids: short-range order in SeyGexSb1-x-y alloys
- The glassy state of the semiconducting system Ge10SbxSe90−x
- Production of complex chalcogenide glass optics by molding for thermal imaging
- An assessment of Ge-Sb-Se glasses as 8 to 12μm infra-red optical materials
- Density and microhardness of GeSbSe glasses
- Enhancing fluorescence emission properties of Dy3+ doped in chalcogenide glass via very small compositional modifications
- Constraint theory, vector percolation and glass formation
- Structural phase transition and fluorescence lifetime of amorphous chalcogenide alloys doped with rare-earths
- Optical and calorimetric studies of Ge-Sb-Se glasses
- Kinetics of Crystal Nucleation in Some Normal Alkane Liquids
- Effect of temperature on the molding of chalcogenide glass lenses for infrared imaging applications.
- Index of refraction, dispersion, bandgap and light scattering in GeSe and GeSbSe glasses
Cited by
- Structural and spectroscopic ellipsometry studies on vacuum-evaporated Sn2m−4Sb4S2m+2 (m = 2.5, 3 and 4) thin films deposited on glass and Si substrates
- Thermal expansion behavior of Ge‐Sb‐Se glasses in a compositional range for molded infrared lens applications
- Enhanced surface patterning of chalcogenide glass via imprinting process using a buffer layer
- Broken chemical order in Ge-Sb-Se glasses for use as infrared-transmitting lenses
- The enhanced and broadband near-infrared emission in Pr 3+ /Nd 3+ co-doped tellurite glass
- Crystallization behavior of Ge-Sb-Se glasses in the compositional range for use as molded lenses
- Ge-free chalcogenide glasses based on Ga-Sb-Se and their stabilization by iodine incorporation
- Calorimetric study on Ge23Se67Sb10–0.5CsCl glass
- Two types of structural relaxations around the deformation temperature of Ge20Sb15Se65 glass
- Low gallium-content, dysprosium III-doped, Ge-As-Ga-Se chalcogenide glasses for active mid-infrared fiber optics
- High refractive index dispersion of compositionally optimized Ge-Ga-Sb-S sulfide glass for use as molded lens in the long-wavelength infrared range
- Unravelling interrelations between chemical composition and refractive index dispersion of infrared-transmitting chalcogenide glasses
- Surface modification of chalcogenide glass for diamond-like-carbon coating
- Oxidation-influenced crystallization in (GeSe2)x(Sb2Se3)1-x chalcogenide glasses
- Reshaping transmission spectrum of long-wavelength infrared-transmitting chalcogenide glass via doping of rare earth and/or transition metal ions
- Fabrication of ternary Ge–Se–Sb chalcogenide microlens arrays using thermal reflow
- Structural evolutions of mixed-chalcogen Ge-Sb-S-Se glasses for use as infrared lenses
- Ge28Sb12Se60 Chalcogenide Glass Microstructured Optical Fiber: Fabrication and Application
- Compositional Dependence of Infrared Transmission in Ge‐Based Chalcogenide Glasses
- Infrared transmission and refractive index dispersion of mixed-chalcogen Ge-Sb-S-Se glasses for use in molded lens applications
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