Dubois F, Joannes L, Legros J C
Microgravity Research Center, Université Libre de Bruxelles, 50 Avenue F Roosevelt, CP165y62, B-1050 Brussels, Belgium.
Appl Opt. 1999 Dec 1;38(34):7085-94. doi: 10.1364/ao.38.007085.
A digital holographic technique is implemented in a microscope for three-dimensional imaging reconstruction. The setup is a Mach-Zehnder interferometer that uses an incoherent light source to remove the coherent noise that is inherent in the laser sources. A phase-stepping technique determines the optical phase in the image plane of the microscope. Out-of-focus planes are refocused by digital holographic computations, thus considerably enlarging the depth of investigation without the need to change the optical focus mechanically. The technique can be implemented in transmission for various magnification ratios and can cover a wide range of applications. Performances and limitations of the microscope are theoretically evaluated. Experimental results for a test target are given, and examples of two applications in particle localization and investigation of biological sample are provided.
一种数字全息技术应用于显微镜中以进行三维成像重建。该装置是一个马赫-曾德尔干涉仪,它使用非相干光源来消除激光源固有的相干噪声。一种相移技术用于确定显微镜图像平面中的光学相位。通过数字全息计算对失焦平面进行重新聚焦,从而在无需机械改变光学焦点的情况下显著扩大了研究深度。该技术可在透射模式下针对各种放大率实施,并能涵盖广泛的应用。从理论上评估了该显微镜的性能和局限性。给出了测试目标的实验结果,并提供了在粒子定位和生物样本研究中的两个应用实例。