Liu Haitao, Yan Yingbai, Yi Deer, Jin Guofan
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China.
Appl Opt. 2003 Mar 10;42(8):1463-76. doi: 10.1364/ao.42.001463.
Theories to design a three-dimensional superresolution filter (TDSF) for confocal microscopy are proposed that can obtain a globally optimal solution through linear programming. The designed TDSF is proved to be a phase-only element introducing a phase delay of 0 or pi. Five design examples of the TDSF are presented to demonstrate the validity of these theories, Regardless of transverse superresolution, a curve of Seu(Ga+/-) defined as the maximum value of Strehl ratio S under the axial resolving power of Ga+/- is calculated to set the fundamental limits of axial optical superresolution. Finally, what is to our knowledge a novel analytic expression of Seu(Ga+/-) is deduced.
提出了用于共聚焦显微镜的三维超分辨率滤波器(TDSF)的设计理论,该理论可通过线性规划获得全局最优解。所设计的TDSF被证明是一个仅相位元件,引入0或π的相位延迟。给出了TDSF的五个设计实例以证明这些理论的有效性。无论横向超分辨率如何,计算定义为在Ga+/-轴向分辨力下斯特列尔比S的最大值的Seu(Ga+/-)曲线,以设定轴向光学超分辨率的基本极限。最后,推导出据我们所知的Seu(Ga+/-)的新颖解析表达式。