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Long-period gratings in a standard telecom fibre fabricated by high-intensity femtosecond UV and near-UV laser pulses

机译:通过高强度飞秒紫外线和近紫外线激光脉冲制造的标准电信光纤中的长周期光栅

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摘要

We inscribed long-period gratings in a hydrogenated SMF-28 Corning fibre using a point-by-point technique and as a light source high-intensity (100-1000 GW cm~(-2)) femtosecond (220-250 fs) pulses at the fourth, fifth and third harmonics (264, 211 and 352 nm, respectively) of Nd:glass laser radiation. The strength of the transmission loss peak reaches 30 dB in gratings recorded with a period of 300 (mu)m and a length of 2 cm, which is significantly higher than the strength of long-period gratings inscribed with the same parameters by any other photochemical method. The analysis of the absorbed energy distribution revealed that such long-period gratings are induced via a two-photon absorption mechanism (or three-photon in the case of 352 nm excitation) and characterized by preferential energy deposition in the cladding, which leads to a high asymmetry of refractive index change (relative to the fibre core) and results in high birefringence properties of gratings formed by high-intensity UV and near-UV radiation.
机译:我们使用逐点技术并以高强度(100-1000 GW cm〜(-2))飞秒(220-250 fs)脉冲作为光源在氢化SMF-28康宁光纤中刻写了长周期光栅Nd:玻璃激光辐射的第四,第五和第三谐波(分别为264、211和352 nm)。在以300μm的周期和2 cm的长度记录的光栅中,传输损耗峰值的强度达到30 dB,这明显高于任何其他光化学方法在相同参数下标出的长周期光栅的强度方法。对吸收的能量分布的分析表明,这种长周期光栅是通过双光子吸收机制(在352 nm激发的情况下为三光子)诱发的,其特征是在包层中优先沉积了能量,从而导致了折射率变化的高不对称性(相对于纤芯),并导致由高强度紫外线和近紫外线辐射形成的光栅具有高双折射特性。

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