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Direct comparison of shot-to-shot noise performance of all normal dispersion and anomalous dispersion supercontinuum pumped with sub-picosecond pulse fiber-based laser

机译:直接比较亚皮秒脉冲光纤激光器泵浦的所有正常色散和异常色散超连续谱的逐点噪声性能

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摘要

Coherence of supercontinuum sources is critical for applications involving characterization of ultrafast or rarely occurring phenomena. With the demonstrated spectral coverage of supercontinuum extending from near-infrared to over 10 μm in a single nonlinear fiber, there has been a clear push for the bandwidth rather than for attempting to optimize the dynamic properties of the generated spectrum. In this work we provide an experimental assessment of the shot-to-shot noise performance of supercontinuum generation in two types of soft glass photonic crystal fibers. Phase coherence and intensity fluctuations are compared for the cases of an anomalous dispersion-pumped fiber and an all-normal dispersion fiber. With the use of the dispersive Fourier transformation method, we demonstrate that a factor of 100 improvement in signal-to-noise ratio is achieved in the normal-dispersion over anomalous dispersion-pumped fiber for 390 fs long pump pulses. A double-clad design of the photonic lattice of the fiber is further postulated to enable a pump-related seeding mechanism of normal-dispersion supercontinuum broadening under sub-picosecond pumping, which is otherwise known for similar noise characteristics as modulation instability driven, soliton-based spectra.
机译:超连续谱源的相干性对于涉及表征超快现象或罕见现象的应用至关重要。在单个非线性光纤中,超连续谱的光谱覆盖范围已从近红外扩展到超过10μm,这明显推动了带宽发展,而不是试图优化所生成频谱的动态特性。在这项工作中,我们提供了对两种类型的软玻璃光子晶体光纤中超连续谱产生的逐点噪声性能的实验评估。比较了色散泵浦异常光纤和全色散光纤异常情况下的相干和强度波动。通过使用色散傅里叶变换方法,我们证明了对于390 fs长的泵浦脉冲,正常色散比异常色散泵浦光纤的信噪比提高了100倍。光纤的光子晶格的双包层设计进一步被假定为能够在亚皮秒级泵浦下实现与色散相关的正色散超连续谱加宽的与泵相关的播种机制,否则,该机制因类似于调制不稳定性驱动的孤子效应而闻名。基于光谱。

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