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A shaped annular beam tri-heterodyne confocal microscope with good anti-environmental interference capability

机译:具有良好的抗环境干扰能力的异型环形光束三外差共聚焦显微镜

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摘要

A shaped annular beam tri-heterodyne confocal microscope has been proposed to improve the anti-environmental interference capability and there solution of a confocal microscope. It simultaneously detects far-, on-, and near-focus signals with given phase differences by dividing the measured light path of the confocal microscope into three sub-paths (signals). Pair-wise real-time heterodyne subtraction of the three signals is used to improve the anti-environmental interference capability, axial resolution, and linearity; and a shaped annular beam super-resolution technique is used to improve lateral resolution. Theoretical analyses and preliminary experiments indicate that an axial resolution of about 1 nm can be achieved with a shaped annular beam tri-heterodyne confocal microscope and its lateral resolution can be better than 0.2 mu m for lambda = 632.8 nm, the numerical aperture of the lens of the microscope is NA = 0.85, and the normalized radius epsilon = 0.5.
机译:提出了一种异型环形束三外差共聚焦显微镜,以提高其抗环境干扰能力,并提出了解决方案。通过将共聚焦显微镜的测量光路分为三个子路径(信号),它可以同时检测具有给定相位差的远焦点,开焦点和近焦点信号。使用三个信号的成对实时外差相减法来提高抗环境干扰能力,轴向分辨率和线性度。并采用成形的环形光束超分辨率技术来提高横向分辨率。理论分析和初步实验表明,使用环形环形三外差共聚焦显微镜可以实现大约1 nm的轴向分辨率,对于λ= 632.8 nm(透镜的数值孔径),其横向分辨率可以优于0.2μm显微镜的NA = 0.85,归一化半径ε= 0.5。

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