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Terahertz and millimetre wave technology in port and harbour security

机译:太赫兹和毫米波技术在港口和港口安全中的应用

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The terahertz region of the electromagnetic spectrum is typically defined in the frequency range 100 GHz to 10 THz, corresponding to a wavelength range of 3 mm to 30 microns. The millimetre wave region lies between 30 GHz and 300 GHz, corresponding to a wavelength range of 10 cm to 1 mm and overlaps a portion of the terahertz region. Following the development of coherent sources and detectors in the early eighties, there has been growing interest in the role of terahertz technology for security and defence. The terahertz region offers a huge expanse of unused bandwidth, which currently presents a significant advantage for both security and defense initiatives. The ability of terahertz radiation to probe intermolecular interactions, large amplitude vibrations and rotational modes, in addition to showing polarization sensitivity makes terahertz radiation a unique and diverse region of the electromagnetic spectrum. The additional ability of both terahertz and millimeter wave radiation to 'see through' common materials, such as thick smoke, fog and dust, which are often considered as opaque in other regions of the electromagnetic spectrum offers further advantages over other optical techniques. Due to the heavy attenuation of terahertz radiation by water vapour, millimeter wave technology is more suited for long range, all-weather imaging systems, whereas terahertz technology has more potential for high resolution short range imaging and spectroscopy. The potential of terahertz and millimetre wave technology and their associated potential for port and harbour security initiatives are discussed.
机译:电磁频谱的太赫兹区域通常定义在100 GHz至10 THz的频率范围内,对应于3 mm至30微米的波长范围。毫米波区域位于30 GHz至300 GHz之间,对应于10 cm至1 mm的波长范围,并且与太赫兹区域的一部分重叠。随着八十年代初期相干源和探测器的发展,人们对太赫兹技术在安全和防御中的作用越来越感兴趣。太赫兹区域提供了巨大的未使用带宽,这目前在安全和防御计划方面都具有显着优势。太赫兹辐射探测分子间相互作用,大振幅振动和旋转模式的能力,除了显示极化灵敏度外,还使太赫兹辐射成为电磁频谱的独特且多样化的区域。太赫兹和毫米波辐射具有“透视”普通材料(例如浓烟,雾和灰尘)的附加功能,这些材料在电磁光谱的其他区域通常被认为是不透明的,与其他光学技术相比,具有其他优势。由于水蒸气对太赫兹辐射的严重衰减,毫米波技术更适合于远程全天候成像系统,而太赫兹技术在高分辨率短距离成像和光谱学上具有更大的潜力。讨论了太赫兹和毫米波技术的潜力及其对港口和港口安全计划的相关潜力。

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