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Supercontinuum generation for coherent anti- Stokes Raman scattering microscopy with photonic crystal fibers

机译:用于光子晶体光纤的相干反斯托克斯拉曼散射显微镜的超连续谱产生

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摘要

Photonic crystal fiber (PCF) designs with two zero-dispersion wavelengths (ZDWs) are experimentally investigated in order to suggest a novel PCF for coherent anti-Stokes Raman scattering (CARS) microscopy. From our investigation, we select the optimum PCF design and demonstrate a tailored spectrum with power concentrated around the relevant wavelengths for lipid imaging (648 nm and 1027 nm). This new PCF is characterized by varying the fiber length, the average power, and the pulse width of the fs pump pulses. It was found that the selected PCF design gave a significantly improved spectral distribution compared to an existing PCF for CARS microscopy. Furthermore, the PCF is designed in a twofold symmetric structure allowing for polarization maintaining propagation. Finally, the pulse propagation is investigated numerically showing good agreement with the measured spectrum. From the numerical analysis, the nonlinear effects responsible for the spectral broadening are explained to be soliton fission processes, dispersive waves, and stimulated Raman scattering.
机译:实验研究了具有两个零色散波长(ZDW)的光子晶体光纤(PCF)设计,以提出一种用于相干抗斯托克斯拉曼散射(CARS)显微镜的新型PCF。从我们的研究中,我们选择最佳的PCF设计,并展示了定制的光谱,其功率集中在脂质成像(648 nm和1027 nm)的相关波长附近。这种新的PCF的特点是改变光纤长度,平均功率和fs泵浦脉冲的脉冲宽度。已发现,与用于CARS显微镜的现有PCF相比,所选的PCF设计具有明显改善的光谱分布。此外,PCF被设计为双重对称结构,以实现偏振保持传播。最后,对脉冲传播进行了数值研究,显示与测得的光谱具有良好的一致性。从数值分析中,导致光谱展宽的非线性效应被解释为孤子裂变过程,色散波和受激拉曼散射。

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