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Nonlinear polarization dynamics in a weakly birefringent all-normal dispersion photonic crystal fiber: toward a practical coherent fiber supercontinuum laser

机译:弱双折射全正常色散光子晶体光纤中的非线性偏振动力学:面向实用的相干光纤超连续谱激光器

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摘要

Dispersion-flattened dispersion-decreased all-normal dispersion (DFDD-ANDi) photonic crystal fibers have been identified as promising candidates for high-spectral-power coherent supercontinuum (SC) generation. However, the effects of the unintentional birefringence of the fibers on the SC generation have been ignored. This birefringence is widely present in nonlinear non-polarization maintaining fibers with a typical core size of 2 µm, presumably due to the structural symmetry breaks introduced in the fiber drawing process. We find that an intrinsic form-birefringence on the order of 10−5 profoundly affects the SC generation in a DFDD-ANDi photonic crystal fiber. Conventional simulations based on the scalar generalized nonlinear Schrödinger equation (GNLSE) fail to reproduce the prominent observed features of the SC generation in a short piece (9-cm) of this fiber. However, these features can be qualitatively or semi-quantitatively understood by the coupled GNLSE that takes into account the form-birefringence. The nonlinear polarization effects induced by the birefringence significantly distort the otherwise simple spectrotemporal field of the SC pulses. We therefore propose the fabrication of polarization-maintaining DFDD-ANDi fibers to avoid these adverse effects in pursuing a practical coherent fiber SC laser.
机译:色散平坦的色散减小的全正态色散(DFDD-ANDi)光子晶体光纤已被确定为高光谱功率相干超连续谱(SC)产生的有希望的候选者。但是,纤维的意外双折射对SC生成的影响已被忽略。这种双折射广泛存在于非线性非偏振保持光纤中,其典型纤芯尺寸为2 µm,这可能是由于在光纤拉伸过程中引入了结构对称性断裂。我们发现,大约10 −5 的本征形式双折射会深刻影响DFDD-ANDi光子晶体光纤中的SC生成。基于标量广义非线性Schrödinger方程(GNLSE)的常规模拟无法在该光纤的短片(9厘米)中重现SC世代的突出观察特征。但是,考虑到形式双折射,耦合的GNLSE可以定性或半定量地理解这些特征。由双折射引起的非线性偏振效应使SC脉冲原本简单的光谱时域大大扭曲。因此,我们建议制造保偏DFDD-ANDi光纤,以避免在追求实用的相干光纤SC激光器时出现这些不利影响。

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