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Suppressing Short-Term Polarization Noise and Related Spectral Decoherence in All-Normal Dispersion Fiber Supercontinuum Generation

机译:抑制全正色散光纤超连续谱产生中的短期偏振噪声和相关的光谱退相干

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摘要

The supercontinuum generated exclusively in the normal dispersion regime of a nonlinear fiber is widely believed to possess low optical noise and high spectral coherence. The recent development of flattened all-normal dispersion fibers has been motivated by this belief to construct a general-purpose broadband coherent optical source. Somewhat surprisingly, we identify a large short-term polarization noise in this type of supercontinuum generation that has been masked by the total-intensity measurement in the past, but can be easily detected by filtering the supercontinuum with a linear polarizer. Fortunately, this hidden intrinsic noise and the accompanied spectral decoherence can be effectively suppressed by using a polarization-maintaining all-normal dispersion fiber. A polarization-maintaining coherent supercontinuum laser is thus built with a broad bandwidth (780–1300 nm) and high spectral power (∼1 mWm).
机译:人们普遍认为,仅在非线性光纤的正常色散状态下产生的超连续谱具有较低的光学噪声和较高的光谱相干性。扁平化全正态色散光纤的最新开发正是出于这种信念,以构建通用的宽带相干光源。出乎意料的是,我们发现这种类型的超连续谱产生了较大的短期极化噪声,该噪声在过去已被总强度测量所掩盖,但是可以通过使用线性偏振器过滤超连续谱来轻松检测到。幸运的是,通过使用保持偏振的全法向色散光纤,可以有效地抑制这种隐藏的固有噪声和伴随的光谱去相干。因此,构建了具有宽带宽(780-1300 nm)和高光谱功率(〜1 mW / nm)的保偏相干超连续谱激光器。

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