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Apodization and the point-spread autocorrelation function

机译:切趾和点扩展自相关函数

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摘要

A novel function, the point-spread autocorrelation function (PSAF), which is closely related to the point-spread function, of a high numerical aperture microscope objective is introduced. The function is both experimentally measured and theoretically modeled for various apodization conditions. These include varying the effective numerical aperture of the objective, applying annuli of different size, and illuminating the objective with a spatially nonuniform intensity distribution. An excellent agreement between experimental data and theoretical modeling is obtained without the use of any fitting parameters. The PSAF technique is sensitive to the various apodization conditions, affecting both the width of the PSAF signal and the amplitude of the sidelobes. A potential use of the technique is the measurement of the effective numerical aperture and the optimization of the illumination conditions in complex microscopical systems. # 1997 Optical Society of America
机译:介绍了一种新的功能,即与高数值孔径显微镜物镜的点扩散函数密切相关的点扩散自相关函数(PSAF)。对于各种变迹条件,均通过实验测量和理论建模该函数。这些措施包括改变物镜的有效数值孔径,施加不同尺寸的环以及以空间上不均匀的强度分布照亮物镜。在不使用任何拟合参数的情况下,获得了实验数据与理论模型之间的极佳一致性。 PSAF技术对各种变迹条件敏感,会影响PSAF信号的宽度和旁瓣的幅度。该技术的潜在用途是在复杂的显微镜系统中测量有效数值孔径并优化照明条件。 #1997美国眼镜学会

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