首页> 外文会议>Conference on Single Molecule Spectroscopy and Superresolution Imaging;Society of Photo-Optical Instrumentation Engineers >Self-interference digital holography (SIDH) for far-field three-dimensional nanoscale localization of uorescent nanoparticles
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Self-interference digital holography (SIDH) for far-field three-dimensional nanoscale localization of uorescent nanoparticles

机译:自干涉数字全息术(SIDH)用于远场三维纳米尺度的定位荧光纳米颗粒

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Self-interference digital holography (SIDH) is a promising approach for three-dimensional imaging as it oersthe ability to view a complete three-dimensional volume from a single image. SIDH has so far, largely beenlimited to image samples that emit a large number of photons. We report the use of a Michelson interferometerbased SIDH setup which provides higher light throughput compared to previous systems that employed spatiallight modulators (SLM). SIDH microscopy incorporating a Michelson interferometer in the proposed opticalconguration and high-numerical-aperture oil immersion objectives can be used to perform super-resolutionsingle-molecule localization microscopy (SMLM) and single-particle tracking (SPT) over large axial ranges. Wedemonstrate this by localizing a single 0.1 m diameter uorescent nanosphere using a custom built wide-eldmicroscope. With 49,000 photons detected, the proposed system achieves a localization precision of 4.5 nm in x,5 nm in y and 39.8 nm in z over a 20 m axial range. Further, we also discuss the SNR requirements to imagephoton-limited light sources such as a single-molecules using SIDH.
机译:自干涉数字全息术(SIDH)是一种有前途的三维成像方法 从单个图像查看完整的三维体积的能力。到目前为止,SIDH在很大程度上 仅限于发射大量光子的图像样本。我们报告了迈克尔逊干涉仪的使用 基于SIDH的设置,与以前使用空间的系统相比,它提供了更高的光通量 光调制器(SLM)。 SIDH显微镜在拟议的光学系统中结合了迈克尔逊干涉仪 配置和高数值孔径的油浸物镜可用于执行超分辨率 单分子定位显微镜(SMLM)和单粒子跟踪(SPT)在较大的轴向范围内。我们 通过定位单个0.1 m直径来证明这一点 使用定制的宽场产生的纳米纳米球 显微镜。提议的系统在检测到49,000个光子的情况下,在x上实现了4.5 nm的定位精度, 在20 m的轴向范围内,y方向为5 nm,z方向为39.8 nm。此外,我们还讨论了对图像的SNR要求 光子受限光源,例如使用SIDH的单分子。

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