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一种用于实时太赫兹成像的多功能照明系统。

A Versatile Illumination System for Real-Time Terahertz Imaging.

机构信息

IMS-Bordeaux University, UMR CNRS 5218, Bât A31, 351 Cours de la Libération, 33400 Talence, France.

Lytid-8 rue la Fontaine, 92120 Montrouge, France.

出版信息

Sensors (Basel). 2020 Jul 17;20(14):3993. doi: 10.3390/s20143993.

Abstract

Terahertz technologies are attracting strong interest from high-end industrial fields, and particularly for non-destructive-testing purposes. Currently lacking compactness, integrability as well as adaptability for those implementations, the development and commercialisation of more efficient sources and detectors progressively ensure the transition toward applicative implementations, especially for real-time full-field imaging. In this work, a flexible illumination system, based on fast beam steering has been developed and characterized. Its primary goal is to suppress interferences induced by the coherence length of certain terahertz sources, spoiling terahertz images. The second goal is to ensure an enhanced signal-to-noise ratio on the detector side by the full use and optimized distribution of the available power. This system provides a homogeneous and adjustable illumination through a simplified setup to guarantee optimum real-time imaging capabilities, tailored to the sample under inspection. Working toward industrial implementations, different illumination process are conveniently assessed as a result of the versatility of this method.

摘要

太赫兹技术受到高端工业领域的强烈关注,特别是在无损检测方面。目前,由于缺乏紧凑性、集成性和适应性,为了实现这些应用,开发和商业化更高效的源和探测器逐渐成为保证向应用实现过渡的关键,特别是对于实时全场成像而言。在这项工作中,开发并对一种基于快速光束转向的灵活照明系统进行了研究和表征。该系统的主要目标是抑制某些太赫兹源的相干长度引起的干扰,从而破坏太赫兹图像。第二个目标是通过充分利用和优化分配可用功率,在探测器端实现更高的信噪比。该系统通过简化设置提供均匀且可调的照明,以保证针对待检样品的最佳实时成像能力。为了实现工业应用,由于该方法的多功能性,可以方便地评估不同的照明过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f40/7412008/1003a1682716/sensors-20-03993-g001.jpg

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