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Generation of Optical Frequency Combs in Fibres

机译:在纤维中产生光学频率梳子

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We numerically investigated the possibility of generating high-quality ultra-short optical pulses with broad frequency-combs spectra in a system consisting of three optical fibres. In this system, the first fibre is a conventional single-mode fibre, the second one is erbium-doped, and the last one is a low-dispersion fibre. The system is pumped with a modulated sine-wave generated by two equally intense lasers with the wavelengths λ_1 and λ_2 such that their central wavelength is at λ_c = (λ_1 +λ_2)/2 = 1531 nm. The modelling was performed using the generalised nonlinear Schrodinger equation which includes the Kerr and Raman effects, as well as the higher-order dispersion and gain. We took a close look at the pulse evolution in the first two stages and studied the pulse behaviour depending on the group-velocity dispersion and the nonlinear parameter of first fibre, as well as the initial laser frequency separation. For these parameters, the optimum lengths of fibre 1 and 2 were found that provide low-noise pulses. To characterise the pulse energy content, we introduced a figure of merit that was dependent on the group-velocity dispersion, the nonlinearity of fibre 1, and the laser separation.
机译:我们在数值上研究了在由三个光纤组成的系统中产生具有宽频率梳理光谱的高质量超短光学脉冲的可能性。在该系统中,第一纤维是传统的单模光纤,第二个是掺铒的,最后一个是低分散纤维。该系统用由两个等强激光器产生的调制正弦波泵送,其中波长λ_1和λ_2,使得它们的中心波长在λ_c=(λ_1+λ_2)/ 2 = 1531nm处。使用包括克尔和拉曼效应的广义非线性Schrodinger方程进行建模,以及高阶分散和增益。我们仔细研究了前两个阶段的脉冲演变,并根据第一光纤的组速度色散和非线性参数研究了脉冲行为,以及初始激光频率分离。对于这些参数,发现光纤1和2的最佳长度提供低噪声脉冲。为了表征脉冲能量含量,我们介绍了依赖于群体速度分散,光纤1的非线性和激光分离的价值的价值。

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