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Reduction of parasitic interferences in digital holographic microscopy by numerically decreased coherence length

机译:通过数字减少相干长度来减少数字全息显微镜中的寄生干扰

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摘要

Due to the large coherence length of laser light, optical path length (OPL) resolution in laser based digital holographic microscopy suffers from parasitic interferences caused by multiple reflections within the experimental setup. Use of partially coherent light reduces this drawback but requires precise and stable matching of object and reference arm's OPLs and limits the spatial frequency of the interference pattern in off-axis holography. Here, we investigate if the noise properties of spectrally broadened light sources can be generated numerically. Therefore, holograms are coherently captured at different laser wavelengths and the corresponding reconstructed wave fields are numerically superimposed utilizing variable weightings. Gaussian and rectangular spectral shapes of the so synthesized field are analyzed with respect to the resulting noise level, which is quantified in OPL distributions of a reflective test target. Utilizing a Gaussian weighting, the noise level is found to be similar to the one obtained with the partially coherent light of a super-luminescent diode. With a rectangular shaped synthesized spectrum, noise is reduced more efficient than with a Gaussian one. The applicability of the method in label-free cell analysis is demonstrated by quantitative phase contrast images obtained from living cancer cells.
机译:由于激光的相干长度大,基于激光的数字全息显微术中的光程长度(OPL)分辨率受到实验设置中多次反射引起的寄生干扰的影响。使用部分相干的光可减少此缺点,但需要对象和参考臂的OPL精确且稳定地匹配,并限制离轴全息术中干涉图的空间频率。在这里,我们研究频谱扩展光源的噪声特性是否可以通过数值生成。因此,全息图在不同的激光波长处被相干地捕获,并且利用可变加权在数值上叠加了相应的重构波场。相对于所产生的噪声水平,分析了这样合成的场的高斯和矩形光谱形状,其在反射测试目标的OPL分布中被量化。利用高斯加权,发现噪声水平类似于使用超发光二极管的部分相干光获得的噪声水平。使用矩形合成频谱,与使用高斯频谱相比,降低噪声的效率更高。该方法在无标记细胞分析中的适用性通过从活癌细胞获得的定量相衬图像得到证明。

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  • 来源
    《Applied physics》 |2012年第1期|p.107-115|共9页
  • 作者单位

    Center for Biomedical Optics and Photonics, Robert-Koch-Str. 45,48129 Miinster, Germany;

    Center for Biomedical Optics and Photonics, Robert-Koch-Str. 45,48129 Miinster, Germany;

    Center for Biomedical Optics and Photonics, Robert-Koch-Str. 45,48129 Miinster, Germany;

    Center for Biomedical Optics and Photonics, Robert-Koch-Str. 45,48129 Miinster, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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