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Application of PVD technique to the fabrication of erbium doped ZrF4-based glass ceramic for optical amplification

机译:PVD技术在光放大铒掺杂ZRF4基玻璃陶瓷制造中的应用

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This paper presents the first optical and spectroscopic characterization of zirconium based fluoride planar waveguides ZE (ZrF4-ErF3) and ZLE (ZrF4-LaF3-ErF3) that have been fabricated by Physical Vapor Deposition (PVD) in dual evaporation configuration [1]. Transparent thin films have been obtained by adjusting vaporization temperature, composition of the ZrF4-based glass and the LaF3-ErF3 batch. In order to improve resistance to moisture, a low refractive index (~1.32) KAlF4 cladding has also been deposited. Infrared spectrum of the waveguides has confirmed the protecting role of the cladding layer for the active layer regarding hydrolysis. Luminescence measurements on waveguide samples have shown promising properties compared with the bulk samples, indicating that this system may be suitable for ceramization like in bulk configuration [2-3].
机译:本文介绍了通过在双蒸发构型(PVD)中由物理气相沉积(PVD)制造的锆基氟化物平面波导Ze(ZrF4-ERF3-ERF3)的第一光学和光谱表征,其双蒸发构型[1]。 通过调节汽化温度,ZrF4基玻璃的组成和LAF3-ERF3批次来获得透明薄膜。 为了改善耐水分,还沉积了低折射率(〜1.32)kalf4包层。 波导的红外光谱已经证实了覆层层对水解的活性层的保护作用。 波导样品上的发光测量显示出与散装样品相比的有希望的性质,表明该系统可以适用于散装构型中的陶瓷[2-3]。

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