Granero Luis, Micó Vicente, Zalevsky Zeev, García Javier
AIDO - Technological Institute of Optics, Color and Imaging, C/ Nicolás Copérnico 7, 46980, Paterna, Spain.
Opt Express. 2009 Aug 17;17(17):15008-22. doi: 10.1364/oe.17.015008.
A method which is useful for obtaining superresolved imaging in a digital lensless Fourier holographic configuration is presented. By placing a diffraction grating between the input object and the CCD recording device, additional high-order spatial-frequency content of the object spectrum is directed towards the CCD. Unlike other similar methods, the recovery of the different band pass images is performed by inserting a reference beam in on-axis mode and using phase-shifting method. This strategy provides advantages concerning the usage of the whole frequency plane as imaging plane. Thus, the method is no longer limited by the zero order term and the twin image. Finally, the whole process results in a synthetic aperture generation that expands up the system cutoff frequency and yields a superresolution effect. Experimental results validate our concepts for a resolution improvement factor of 3.
提出了一种在数字无透镜傅里叶全息配置中获得超分辨成像的有用方法。通过在输入物体和CCD记录设备之间放置一个衍射光栅,物体光谱的额外高阶空间频率成分被导向CCD。与其他类似方法不同,不同带通图像的恢复是通过以轴上模式插入参考光束并使用相移方法来实现的。这种策略在将整个频率平面用作成像平面方面具有优势。因此,该方法不再受零阶项和孪生像的限制。最后,整个过程导致合成孔径的产生,该合成孔径扩展了系统截止频率并产生超分辨效果。实验结果验证了我们将分辨率提高3倍的概念。