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Effect of the Nanostructure Control on the Novel Optical Properties of Silica Photonic Glass Synthesized by VAD Method

机译:纳米结构控制对VAD法合成二氧化硅光子玻璃新型光学性质的影响

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This research reports the development of high homogeneity silica glass for photonic components synthesized by the VAD (Vapor-phase Axial Deposition) method. Structural radial homogeneity of silica soot were characterized by scanning electron microscopy (SEM) and small angle X-ray scattering (SAXS). It was established a relationship with the refractive index homogeneity, Δn, and the birefringence of consolidated boules characterized through interferometry, optical spectrometry, and polarization spectrophotometry. By controlling the silica soot nanostructure during the deposition stage, a material with high radial homogeneity of refractive index of 1 ppm and birefringence of 2 nm/cm can be synthesized.
机译:这项研究报告了通过VAD(气相相轴向沉积)方法合成的用于光子部件的高均质石英玻璃的开发。通过扫描电子显微镜(SEM)和小角度X射线散射(SAXS)表征了硅灰的结构径向均匀性。通过干涉法,光学光谱法和偏振分光光度法建立了与折射率均匀性Δn和固结团块的双折射的关系。通过在沉积阶段控制二氧化硅烟灰纳米结构,可以合成具有1 ppm的高径向均质性和2 nm / cm的双折射的材料。

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