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Stimulated-emission pumping enabling sub-diffraction-limited spatial resolution in coherent anti-Stokes Raman scattering microscopy

机译:激发发射泵浦可在相干反斯托克斯拉曼散射显微镜中实现亚衍射极限的空间分辨率

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We present a theoretical investigation of stimulated emission pumping to achieve sub-diffraction-limited spatial resolution in coherent anti-Stokes Raman scattering (CARS) microscopy. A pair of control light fields is used to prepopulate the Raman state involved in the CARS process prior to the CARS signal generation. Efficient prepopulation is achieved by employing a path via an electronic or vibrational state. Thereby, the buildup of a coherence between the ground and Raman state during irradiation by the light fields for CARS signal generation is prevented, resulting in the suppression of the CARS intensity by more than 99.8%. Two-dimensional spatial excitation profiles have been calculated using donut-shaped spatial profiles for the control light fields, thus, an intensity-dependent narrowing of the CARS excitation profiles below the diffraction limit. Using computer-generated test images we demonstrate a resolution beyond the diffraction limit for CARS microscopy, which is scalable by the control light field intensity, similar to stimulated emission depletion microscopy.
机译:我们提出了在相干抗斯托克斯拉曼散射(CARS)显微镜中实现亚衍射极限空间分辨率的受激发射泵浦的理论研究。一对控制光场用于在CARS信号生成之前预先填充CARS过程中涉及的拉曼状态。通过采用经由电子或振动状态的路径,可以实现有效的预填充。因此,防止了在用于产生CARS信号的光场照射期间在基态和拉曼状态之间的相干性的建立,从而导致CARS强度的抑制超过99.8%。已经使用用于控制光场的甜甜圈形状的空间轮廓来计算二维空间激发轮廓,因此,在衍射极限以下,CARS激发轮廓的强度依赖于变窄。使用计算机生成的测试图像,我们证明了超出CARS显微镜的衍射极限的分辨率,该分辨率可通过控制光场强度进行扩展,类似于受激发射损耗显微镜。

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