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Nondestructive terahertz shape restoration of 3D objects with photo-source-coupled ultrabroadband carbon nanotubes scanners

机译:非破坏性的太赫兹形状恢复3D对象与光源耦合的超碳纳米管扫描仪

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Expanding the available frequency region of the existing three-dimensional (3D) shape restoration technique in the visible light frequency band to the infrared (IR), terahertz (THz), millimeter wave regions enables us to clearly visualize not only conventional external shape information but also inner structures and material properties. Here we report on photo-source-coupled ultrabroadband scanners by using freely bendable thin carbon nanotube (CNT) films and successfully developed a reflective nondestructive 3D shape restoration method in the THz wave frequency region based on a mathematical algorithm. In addition to our novel 3D shape restoration approach of multi-layered hidden objects, various utilizations and applications on industrial sectors can be cultivated thanks to the broadband photo-absorbing property of CNT films.
机译:将现有的三维(3D)形状恢复技术的可用频率区域扩展到红外线(IR),Traihertz(THz),毫米波区域使我们不仅清楚地可视化传统的外部形状信息,而且也是内部结构和材料特性。在这里,我们通过使用可自由可弯曲的薄碳纳米管(CNT)薄膜来报告光源耦合的Ultrabradband扫描仪,并基于数学算法在THz波频区域中成功开发了反射非破坏性3D形状恢复方法。除了我们的多层隐藏物体的新型3D形状恢复方法外,由于CNT薄膜的宽带光吸收性能,可以培养各种利用和工业部门应用。

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