论文标题
高阶模式增强了深蓝色和紫外光谱区域中相匹配的分散波的产生
Higher-order-modes enhanced phase-matched dispersive-wave generation in the deep-blue and UV spectral region
论文作者
论文摘要
在过去的几十年中,已经对固态光子晶体纤维(PCF)进行了广泛的探索,以生成宽带,高稳态超副局(SC)。受熔融二氧化硅的材料吸收和相对较低的非线性的限制,基于二氧化硅PCF的SC中的光谱扩展通常仅限于蓝色到近红外光谱区域,即使在发达的商业来源也是如此。这些来源的输出光谱缺少完整范围的短波长。已经花费了许多努力来打破限制。其中,已经研究了分散波(DW)的生成,以触发短波长中的新频率。在满意的相匹配条件下,可以将过量的能量直接从异常分散区域的孤子传递到短波长的DWS。然而,很少显示对包括相匹配的DW的系统研究,包括相匹配的DW,与高阶模式(HOMS)的分散量密切相关。这项研究报告了深蓝色和紫外线区域DW生成的Hom增强相匹配的实验观察结果。展示了一个基于固体PCF的紫外线扩展的SC源,跨越2.8 octave(350 nm至2500 nm)。同时,我们通过数值计算仔细验证了我们的发现。
During the last few decades, solid-core photonic crystal fibers (PCFs) have been extensively explored to generate broadband, high-coherence supercontinua (SC). Limited by the material absorption and relatively low nonlinearity of fused silica, spectral broadening in silica PCF-based SCs is usually restricted to the blue to near-infrared spectral regions, even in developed commercial sources. The output spectra of these sources are missing short wavelengths of the full range. Many efforts have been spent to break the limitation. Among them, dispersive-wave (DW) generation has been investigated for triggering new frequencies in short wavelengths. With satisfied phase-matching conditions, excessive energy can be directly transferred from solitons of the anomalous dispersion region to DWs of the short wavelengths. However, a systematical study of factors, including phase-matched DWs, strongly related to the dispersion tailoring of higher-order modes (HOMs), has rarely been shown. This study reports the experimental observations of HOM-enhanced phase-matchings for the DW generation in the deep-blue and ultraviolet regions. A solid-core PCF-based, UV-extended SC source spanning a 2.8-octave-wide (350 nm to 2500 nm) is demonstrated. Meanwhile, we carefully verify our findings via numerical calculations.