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Nonlinear interference of two successive coherent anti-Stokes Raman scattering signals for the biological imaging applications

机译:两个连续相干反斯托克斯拉曼散射信号对生物成像应用的非线性干扰

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Nonlinear interference of two successively generated coherent anti-Stokes Raman scattering (CARS) signals from thin glass slabs is demonstrated, in which a collinear phase matching geometry is tried. We used 76 MHz mode-locked Nd:YAG pulsed laser at 1064 nm and its frequency-doubled optical parametric down-converted signal at 817.2 nm as Stokes and pump beams, respectively. The pulse duration time is around 7 ps for both incident laser beams. The relative phase of two CARS signals is controlled by a phase shifting element made of dispersive glass material of which thickness can be varied. The clear interference fringes are observed as the thickness of the phase shifting element changes. The interference effect is utilized to achieve better CARS image quality. We first try imaging the polystyrene beads immersed in water to estimate how the nonlinear interference could improve the contrast of the beads image. Performing the raster scan of the laser beams on the sample, we can get the CARS image and investigate the image quality as a function of the relative phase and amplitude.
机译:对来自薄玻璃板的两个连续产生的相干反斯托克斯拉曼散射(汽车)信号的非线性干扰示出了来自薄玻璃板的信号,其中尝试了共线相位匹配几何形状。我们在1064nm处使用76 MHz模式锁定的Nd:YAG脉冲激光器,其频率加倍的光学参数下转换信号分别为817.2nm作为Stokes和泵浦光束。入射激光束的脉冲持续时间约为7 PS。两辆车信号的相对相由由分散玻璃材料制成的相移元件来控制,该分散玻璃材料可以改变厚度。观察到透明干涉条纹作为相移元件的厚度变化。干扰效果用于实现更好的汽车图像质量。我们首先尝试成像浸入水中的聚苯乙烯珠子来估计非线性干扰如何改善珠子图像的对比度。在样品上执行激光束的光栅扫描,我们可以获得汽车图像并作为相对相位和幅度的函数来研究图像质量。

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