2006
DOI: 10.1016/j.jnoncrysol.2006.01.030
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Synthesis and physical properties of Si(Ge)–Se–Te glasses

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Cited by 14 publications
(2 citation statements)
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“…The acousto‐optic properties of traditional sulfur‐based and selenium‐based glasses, such as As 2 S 3 , 10 Ge–As–S, 11 Ge–Sb–S, 12 As 2 Se 3 , and Ge–As–Se, 13 were studied, and these glasses have relatively high M 2 in the near‐infrared wavelength. However, in the mid‐infrared wavelength, only Ge 19 Se 9 Te 72 chalcogenide glass has high M 2 (M 2 = 4914 × 10 −18 s 3 /g) at 3.39 μm 14 . The base glass of As–Se–Te with additions of 5 mol% Ge and 10 mol% Pb and the base glass of As–Ge–Se with introduction of 20 mol% Te and 5 mol% Pb have M 2 of 1880 × 10 −18 s 3 /g 15 and 1457 × 10 −18 s 3 /g 16 at 10.6 μm, respectively.…”
Section: Introductionmentioning
confidence: 99%
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“…The acousto‐optic properties of traditional sulfur‐based and selenium‐based glasses, such as As 2 S 3 , 10 Ge–As–S, 11 Ge–Sb–S, 12 As 2 Se 3 , and Ge–As–Se, 13 were studied, and these glasses have relatively high M 2 in the near‐infrared wavelength. However, in the mid‐infrared wavelength, only Ge 19 Se 9 Te 72 chalcogenide glass has high M 2 (M 2 = 4914 × 10 −18 s 3 /g) at 3.39 μm 14 . The base glass of As–Se–Te with additions of 5 mol% Ge and 10 mol% Pb and the base glass of As–Ge–Se with introduction of 20 mol% Te and 5 mol% Pb have M 2 of 1880 × 10 −18 s 3 /g 15 and 1457 × 10 −18 s 3 /g 16 at 10.6 μm, respectively.…”
Section: Introductionmentioning
confidence: 99%
“…However, in the mid-infrared wavelength, only Ge 19 Se 9 Te 72 chalcogenide glass has high M 2 (M 2 = 4914 × 10 −18 s 3 /g) at 3.39 μm. 14 The base glass of As-Se-Te with additions of 5 mol% Ge and 10 mol% Pb and the base glass of As-Ge-Se with introduction of 20 mol% Te and 5 mol% Pb have M 2 of 1880 × 10 −18 s 3 /g 15 and 1457 × 10 −18 s 3 /g 16 at 10.6 μm, respectively. Although the M 2 of these glasses in the mid-infrared wavelength is high, their glass-forming and thermal characteristics are relatively poor, and some glasses are prone to liquid phase separation with two glass-transition temperatures (T g ) observed via differential thermal analysis.…”
mentioning
confidence: 97%