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Combination of silicon phase masks with time-domain spectroscopy for single-scan terahertz imaging

机译:硅相掩模与时域光谱仪的结合,用于单扫描太赫兹成像

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摘要

We demonstrate the effectiveness of silicon phase masks to implement spatially resolved, multispectral imaging capabilities in the range of terahertz frequencies, using a standard setup of basic interest for time-domain spectrometry with a single-cell source and a single-cell detector. Our principle primarily aims at the development of robust and inexpensive systems. It consists of appropriate space-to-time encoding, in order to ensure single-scan triggering and then take advantage of rapid and self-consistent measurements in the two-dimensional space. The process enables very efficient discrimination giving access to a relevant spatial resolution in the analysis of small size, planar assemblies made of inhomogeneous materials. Benchmark results are provided to validate the concept, thanks to prototyping phase masks with 2 x 2 pixels, prior evidencing actual performance limitations in the case of 3 x 3 pixels. Due to the frequency bandwidth of 0.1-1.5 THz in our setup and to the available operating conditions, currently acceptable pixel resolutions lie in the range of 3-4 mm. Numerical modeling by means of finite elements helps to discuss these numbers and to investigate the relevant theoretical issues, figuring the main propagation issues in connection with a sub-picosecond seed pulse throughout various masks. This involves diffraction and trailing edge effects when crossing the mask together with residual, parasitic reflections. Finally, we give a consistent prospective for improved performance, via realistic updates regarding the architecture of the setup and complementary post-processing. Further values for the attainable spatial resolution then range from 5 x 5 to 6 x 6 pixels.
机译:我们证明了硅相掩模在太赫兹频率范围内实现空间分辨的多光谱成像功能的有效性,使用时域光谱法的基本关注的标准设置(带有单细胞源和单细胞检测器)来实现。我们的原则主要旨在开发功能强大且价格便宜的系统。它由适当的时空编码组成,以确保单次扫描触发,然后利用二维空间中快速且自洽的测量值。该方法能够非常有效地进行判别,从而在分析由非均质材料制成的小尺寸,平面组件时可获得相关的空间分辨率。由于具有2 x 2像素的原型相位掩模原型,在提供3 x 3像素情况下的实际性能限制之前,提供了基准测试结果来验证该概念。由于我们的设置中的带宽为0.1-1.5 THz,并且由于可用的工作条件,当前可接受的像素分辨率在3-4 mm的范围内。借助有限元进行的数值建模有助于讨论这些数字并研究相关的理论问题,从而确定与整个皮罩内亚皮秒种子脉冲相关的主要传播问题。当穿过掩模与残余的寄生反射一起时,这涉及衍射和后缘效应。最后,我们通过有关设置体系结构和补充后处理的现实更新,为提高性能提供了一致的前景。然后,可获得的空间分辨率的其他值在5 x 5到6 x 6像素的范围内。

著录项

  • 来源
    《Applied physics》 |2015年第3期|441-450|共10页
  • 作者单位

    ALPhANOV, Inst Opt Aquitaine, F-33403 Talence, France|CEA, Ctr Etudes Sci & Tech Aquitaine, F-33114 Le Barp, France;

    Hasan Kalyoncu Univ, Dept Elect & Elect Engn, Sahinbey, Gaziantep, Turkey;

    Univ Angers, LARIS, F-49000 Angers, France;

    Greenfield Technol, F-33114 Le Barp, France;

    ALPhANOV, Inst Opt Aquitaine, F-33403 Talence, France;

  • 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

  • 入库时间 2022-08-18 03:08:05

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