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Ground-state depletion for subdiffraction-limited spatial resolution in coherent anti-Stokes Raman scattering microscopy

机译:相干反斯托克斯拉曼散射显微镜中用于子衍射极限空间分辨率的基态耗竭

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摘要

We theoretically investigate ground-state depletion for subdiffraction-limited spatial resolution in coherent anti-Stokes Raman scattering (CARS) microscopy. We propose a scheme based on ground-state depopulation, which is achieved via a control laser light field incident prior to the CARS excitation light fields. This ground-state depopulation results in a reduced CARS signal generation. With an appropriate choice of spatial beam profiles, the scheme can be used to increase the spatial resolution. Based on the density matrix formalism we calculate the CARS signal generation and find a CARS signal suppression by 75% due to ground-state depletion with a single control light field and by using two control light fields the CARS signal suppression can be enhanced to 94%. Additional control light fields will enhance the CARS suppression even further. In case of a single control light field we calculate resulting CARS images using a computer-generated test image including quantum and detector noise and show that the background from the limited CARS suppression can be removed by calculating difference images, yielding subdiffraction-limited resolution where the resolution achievable depends only on the intensity used.
机译:我们在理论上研究了相干反斯托克斯拉曼散射(CARS)显微镜中亚衍射极限空间分辨率的基态耗竭。我们提出了一种基于基态人口减少的方案,该方案是通过在CARS激发光场之前入射的控制激光场来实现的。这种基态人口减少导致CARS信号生成减少。通过适当选择空间光束轮廓,该方案可用于提高空间分辨率。基于密度矩阵形式,我们计算CARS信号的产生,并发现由于单个控制光场引起的基态损耗,CARS信号抑制可达到75%,而通过使用两个控制光场,CARS信号抑制可提高到94% 。附加的控制光场将进一步增强CARS抑制能力。在单个控制光场的情况下,我们使用计算机生成的包含量子噪声和检测器噪声的测试图像来计算生成的CARS图像,并表明可以通过计算差异图像来消除有限CARS抑制的背景,从而产生亚衍射极限分辨率,其中可获得的分辨率仅取决于所使用的强度。

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