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Low loss waveguide on chalcogenide glass using ultrafast laser at low repetition rate

机译:低损耗波导在低重复率下使用超自递激光使用超自递激光

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In this work, we synthesized bulk amorphous GeGaS glass by conventional melt quenching technique. Amorphous nature of the glass is confirmed using X-ray diffraction. We fabricated the channel waveguides on this glass using the ultrafast laser inscription technique. The waveguides are written on this glass 100 μm below the surface of the glass with a separation of 50 μm by focusing the laser beam into the material using 0.67 NA lens. The laser parameters are set to 350 fs pulse duration at 100 KHz repetition rate. A range of writing energies with translation speeds 1 mm/s, 2 mm/s, 3 mm/s and 4 mm/s were investigated. After fabrication the waveguides facets were ground and polished to the optical quality to remove any tapering of the waveguide close to the edges. We characterized the loss measurement by butt coupling method and the mode field image of the waveguides has been captured to compare with the mode field image of fibers. Also we compared the asymmetry in the shape of the waveguide and its photo structural change using Raman spectra.
机译:在这项工作中,我们通过常规熔体淬火技术合成散装非晶态GEGAS玻璃。使用X射线衍射确认玻璃的无定形性质。我们使用超快激光题字技术在该玻璃上制造了通道波导。通过将激光束聚焦到材料中,通过将激光束聚焦到材料,将波导在玻璃表面下方写在玻璃表面下方100μm。激光参数以100 kHz重复速率设定为350 fs脉冲持续时间。研究了具有翻译速度1 mm / s,2 mm / s,3 mm / s和4 mm / s的写入能量的范围。在制造后,波导面部被研磨并抛光到光学质量,以靠近边缘的任何锥形。我们以对接耦合方法表征了损耗测量,并且已经捕获了波导的模式场图像以与光纤的模式场图像进行比较。此外,我们使用拉曼光谱比较了波导形状的不对称性及其照片结构变化。

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