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Loss Mechanisms of Optical Waveguides Inscribed in Fused Silica by Femtosecond Laser Direct Writing

机译:飞秒激光直接写入熔融石英刻写的光波导的损耗机理

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摘要

Optical waveguides directly written in fused silica using a femtosecond laser were characterized from 350 to 1750 nm to gain insight on the waveguide's loss mechanisms and their dependence on processing parameters, such as pulse energy, scan velocity, and annealing temperature. Two major loss mechanisms were identified. In the range of parameters tested, high pulse energy was seen to improve coupling losses at long wavelengths, while high scan velocity has a negative effect in both Rayleigh scattering and coupling losses at long wavelengths. Thermal annealing of the waveguides demonstrated an improvement of the Rayleigh scattering at a cost of higher coupling losses at long wavelengths. Wavelength independent Mie scattering was also observed, evolving negatively with pulse energy. A minimum Rayleigh scattering coefficient of approximate to 0.5 dB.cm(-1).mu m(4) (approximate to 0.08 dB.cm(-1).mu m(4) for thermally treated waveguides) together with a Mie scattering coefficient of approximate to 0.2-0.65 dB/cm are reported.
机译:使用飞秒激光在熔融石英中直接写入的光波导的特征是在350至1750 nm之间,以深入了解波导的损耗机理及其对处理参数(如脉冲能量,扫描速度和退火温度)的依赖性。确定了两个主要的损失机制。在测试的参数范围内,高脉冲能量可改善长波长处的耦合损耗,而高扫描速度对瑞利散射和长波长处的耦合损耗均具有负面影响。波导的热退火表明,在长波长下以较高耦合损耗为代价,改善了瑞利散射。还观察到与波长无关的米氏散射,其随脉冲能量负向发展。最小瑞利散射系数大约为0.5 dB.cm(-1).μm(4)(热处理波导约为0.08 dB.cm(-1).μm(4))和Mie散射系数据报道约为0.2-0.65dB / cm。

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