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Supercontinuum generation in a two-dimensional photonic kagome crystal

机译:二维光子kagome晶体中的超连续谱生成

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We demonstrate the generation of ultrabroad spectra in a photonic crystal fiber with a kagome-lattice transverse structure. This two-dimensional periodic photonic lattice allows for strong confinement of light without employing defect states nor using photonic bandgap guiding. Light guiding is mediated by total internal reflection in the intersections of the lattice structure, similar to tapered or micro-structured fibers. The kagome lattice structure is manufactured from a soft glass with a high nonlinearity. Using a Ti:sapphire oscillator as a pump source, we observe for the first time impressive Supercontinuum generation in the guided modes of a 2D photonic lattice. Supercontinuum generation is caused by fission and radiation of higher-order solitons in the anomalous dis-persion range. Our spectrum encompasses the spectral range from 200 to 1750 nm. The dependence of the continuum on coupling spot location, fiber length, and pump wavelength and power as well as on pulse duration and polarization state is investigated. Using a numerical simulation for the lattice structure, pulse propagation through this structure is theoretically studied. Our model reveals the mechanism of supercon-tinuuum generation in the 2D photonic structure and explains the essential experimental findings.
机译:我们证明了具有kagome晶格横向结构的光子晶体光纤中超宽带光谱的生成。此二维周期性光子晶格可在不采用缺陷状态或不使用光子带隙引导的情况下对光进行强力限制。导光由晶格结构相交处的全内反射来介导,类似于锥形或微结构纤维。裙果晶格结构由具有高非线性的软玻璃制成。使用Ti:蓝宝石振荡器作为泵浦源,我们首次在二维光子晶格的引导模式下观察到令人印象深刻的超连续谱产生。超连续谱的产生是由异常色散范围内的高阶孤子的裂变和辐射引起的。我们的光谱涵盖200到1750 nm的光谱范围。研究了连续体对耦合点位置,光纤长度,泵浦波长和功率以及脉冲持续时间和偏振态的依赖性。使用晶格结构的数值模拟,理论上研究了通过该结构的脉冲传播。我们的模型揭示了二维光子结构中超连续体产生的机理,并解释了必要的实验发现。

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