Amorphous Chalcogenides: Advances and Applications - download pdf or read online

By Rong Ping Wang

ISBN-10: 9814411299

ISBN-13: 9789814411295

ISBN-10: 9814411302

ISBN-13: 9789814411301

This booklet presents a complete review of the chalcogenide glass technology and diverse functions in accordance with the glasses. It begins with a overview at the glass-forming skill of varied structures, through a dialogue at the structural and actual houses of assorted chalcolgenide glasses and their program in built-in optics. The chapters were contributed by means of widespread specialists from all over the place the Read more...

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Extra info for Amorphous Chalcogenides: Advances and Applications

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5 kg. (b) Brittleness versus for the binary Ge–Se system at room temperature (RT) as well as –80°C. 4. These properties range from density and thermal expansion to glass-forming ability [11, 16, 44]. For example, Fig. 2 shows the density and liquid thermal expansion versus for the binary Ge–Se and ternary Ge–Sb–Se systems. 4. 2 (a) Density as a function of for the binary Ge–Se (squares) and the ternary Ge–Sb–Se (triangles) (adapted from [44]). (b) Liquid-state thermal expansion coefϐicient αL as a function of for the binary Ge–Se (squares) and the ternary Ge–Sb–Se (triangles) (adapted from [16]).

For example, Fig. 2 shows the density and liquid thermal expansion versus for the binary Ge–Se and ternary Ge–Sb–Se systems. 4. 2 (a) Density as a function of for the binary Ge–Se (squares) and the ternary Ge–Sb–Se (triangles) (adapted from [44]). (b) Liquid-state thermal expansion coefϐicient αL as a function of for the binary Ge–Se (squares) and the ternary Ge–Sb–Se (triangles) (adapted from [16]). 67 associated with a chemical threshold and a change in dimensionality in the network [44, 46–48].

15 Halfpap B. L. and Lindsay S. , Rigidity percolation in the germaniumarsenic-selenium alloy system. Phys. Rev. , 57, 847–849 (1986). 16 Senapati U. and Varshneya A. , Conϐigurational arrangements in chalcogenide glasses: a new perspective on Phillips’ constraint theory. J. Non-Cryst. Solids, 185, 289–96 (1995). , Bresser W. , Direct evidence for stiffness threshold in chalcogenide glasses. Phys. Rev. , 78, 4422–4425 (1997). 18 Varshneya A. , Mauro D. , and Bowden B. , Deformation and cracking in Ge-Sb-Se chalcogenide glasses during indentation.

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Amorphous Chalcogenides: Advances and Applications by Rong Ping Wang


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