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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Breaking the diffraction limit by saturation in stimulated-Raman-scattering microscopy: A theoretical study
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Breaking the diffraction limit by saturation in stimulated-Raman-scattering microscopy: A theoretical study

机译:激发拉曼散射显微镜中饱和度打破衍射极限的理论研究

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摘要

We present a theoretical investigation on the saturation of stimulated Raman scattering (SRS) and propose an application of it to break the diffraction limit in SRS microscopy. In our proposed scheme, a donut-shaped Stokes beam is used to saturate SRS at the rim of a focused Gaussian pump beam; thus the addition of another Gaussian Stokes beam can only induce additional stimulated Raman loss to the pump beam in a small area inside the donut-shaped beam. Resembling stimulated-emission-depletion microscopy, this method can significantly improve the lateral imaging resolution. Compared with the diffraction-limited resolution, theoretical simulations show that it may be possible to double the spatial resolution with a few TW/cm~2 of laser intensity. Such super-resolution could greatly enhance the advantage of SRS microscopy for potential applications.
机译:我们目前对受激拉曼散射(SRS)的饱和度进行理论研究,并提出将其用于突破SRS显微镜中的衍射极限的应用。在我们提出的方案中,甜甜圈形的斯托克斯束用于使聚焦高斯泵浦束的边缘处的SRS饱和。因此,在甜甜圈形光束内部的一小部分区域内,增加另一条高斯斯托克斯光束只会对泵浦光束产生额外的受激拉曼损耗。该方法类似于激发发射耗尽显微镜,可以显着提高横向成像分辨率。与衍射极限分辨率相比,理论模拟表明,以几个TW / cm〜2的激光强度可以使空间分辨率翻倍。这种超分辨率可以极大地增强SRS显微镜在潜在应用中的优势。

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