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Goniospectrometric space: identifiable presentation of spectral goniometric data for complex diffractive samples

机译:GONIOSPECTRINCLICLICAL空间:复杂衍射样本的谱测量数据的可识别呈现

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摘要

Optical security takes advantage of complex gonioapparent effects of diffractive samples having strong angular and spectral dependence of reflected light. However, resolving the full angular and spectral properties of these kinds of targets might be a tremendous task. Preferably, one would like to measure a more limited number of illumination-viewing directions, using a multiangle goniometer, and still reveal the complex and unique properties of the target. In this study, we use a method for converting the full angular reflection data into reduced goniospectrometric space and further on into an xDNA graph, which we find to show good potential as a fingerprint for gonioapparent surfaces when limited measurement geometries are available. For the evaluation of the xDNA graph, we use two goniometric devices with a 45 degrees incident angle illumination, a high-resolution bidirectional spectrometer, and a portable multiangle goniometer. This study tests the xDNA graph by evaluating the effects of geometry count and spectral resolution in goniometric measurements and further finds that the xDNA graph indeed works best with a reduced count of geometries and is not sensitive to lowered spectral resolution. (C) 2016 Optical Society of America
机译:光学安全利用具有强角度和光谱依赖性的衍射样本的复杂GONIOAPPARENT效果。但是,解决这些目标的完整角度和光谱特性可能是一个巨大的任务。优选地,人们希望使用多聚测度计测量更有限数量的照明观察方向,并且仍然揭示目标的复杂和独特性质。在本研究中,我们使用一种用于将完整角度反射数据转换为减少的戈什考虑空间的方法,进一步进入XDNA图表,我们发现当有限的测量几何形状可用时,我们发现良好的潜力作为GonioApparent表面的指纹。为了评估XDNA图,我们使用具有45度入射角照明,高分辨率双向光谱仪和便携式多聚测电计的两个测功器件。该研究通过评估几何计数和光谱分辨率在测量测量中的效果来测试XDNA曲线图,并且进一步发现XDNA图实际上最佳地用几何计数来工作,并且对降低的光谱分辨率不敏感。 (c)2016年美国光学学会

著录项

  • 来源
    《Applied optics》 |2016年第8期|共10页
  • 作者单位

    Univ Eastern Finland Inst Photon POB 111 FI-80101 Joensuu Finland;

    Focus Act Ltd POB 71 FI-33471 Ylojarvi Finland;

    Jozef Stefan Inst Jamova 39 SI-1000 Ljubljana Slovenia;

    Natl Inst Chem Hajdrihova 19 SI-1000 Ljubljana Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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