Departamento de Óptica, University Valencia, Burjassot, Spain.
Opt Lett. 2011 Mar 15;36(6):885-7. doi: 10.1364/OL.36.000885.
We present single-exposure super-resolved interferometric microscopy (SESRIM) as a novel approach capable of providing one-dimensional (1-D) super-resolution (SR) imaging in holographic microscopy using a single illumination shot. The single-exposure SR working principle is achieved by combining angular and wavelength multiplexing incoming from a set of tilted beams with different wavelengths where each wavelength is tuned with the red-green-blue (RGB) channels of a color CCD. Thus, the information included in each color channel is retrieved by holographic recording using a single-color CCD capture and by analyzing the RGB channels. Finally, 1-D SR imaging is obtained after the digital postprocessing stage yielding the generation of a synthetic aperture. Experimental results are reported validating the proposed SESRIM approach while an extension of the proposed approach to the two-dimensional case is considered.
我们提出了单次曝光超分辨干涉显微镜(SESRIM),这是一种新的方法,能够在全息显微镜中提供一维(1-D)超分辨率(SR)成像,只需单次照明即可。单次曝光 SR 的工作原理是通过组合来自一组具有不同波长的倾斜光束的角度和波长复用来实现的,其中每个波长都与彩色 CCD 的红-绿-蓝(RGB)通道调谐。因此,通过使用单彩色 CCD 捕获和分析 RGB 通道对全息记录来检索每个颜色通道中包含的信息。最后,在数字后处理阶段获得 1-D SR 成像,从而生成合成孔径。实验结果验证了所提出的 SESRIM 方法的有效性,同时考虑了将该方法扩展到二维情况。