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Investigations on the Bragg grating recording in all-silica, standard and microstructured optical fibers using 248 nm 5 ps, laser radiation

机译:使用248 nm 5 ps,激光辐射在全石英,标准和微结构光纤中记录布拉格光栅的研究

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摘要

The fabrication of Bragg reflectors in hydrogenated, all-silica, fluorine cladding depressed and microstructured optical fibers using 248 nm, 5 ps laser radiation, is investigated here. Comparative Bragg grating recordings are performed in both optical fibers, for investigating effects related to the scattering induced by the capillary micro-structure, to the photosensitivity and index engineering yield. Further, finite difference time domain method is employed for simulating the scattering from the above capillary structure and the nominal intensity reaching the fiber core for side-illumination. The maximum modulated refractive index changes inscribed in the standard, step-index fiber were of the order of 8.3x10-5, while the maximum refractive index changes inscribed in one of the microstructured optical fibers was 32% lower and 5.7x10-5, for nominal pulse intensities of 20 GW/cm2 and modest accumulated energy densities.
机译:在此研究了使用248 nm,5 ps激光辐射在氢化的全石英,氟包覆石英的微结构化光纤中制造布拉格反射器的方法。在两种光纤中都进行了比较布拉格光栅记录,以研究与毛细管微结构引起的散射,光敏性和折射率工程产率有关的影响。此外,采用时域有限差分法来模拟来自上述毛细管结构的散射和到达光纤芯以进行侧面照明的标称强度。在标准的阶跃折射率光纤中,最大调制折射率变化约为8.3x10-5,而在其中一根微结构光纤中,最大调制折射率变化较低,为5.7x10-5。标称脉冲强度为20 GW / cm2,累积能量密度适中。

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