【24h】

TERAHERTZ IMAGING, MILLIMETER-WAVE RADAR

机译:TERAHERTZ成像,毫米波雷达

获取原文
获取原文并翻译 | 示例

摘要

The millimeter wave (MMW) band of frequencies extends from 30 GHz to 300 GHz, with some fuzziness on both ends of this spectrum. The terahertz (THz) band extends from about 200 GHz to about 30 THz, despite the fact that the lower frequencies in this range are not strictly 10~(12) Hz or higher. These bands are also variously called submillimeter, far-infrared, and near-millimeter. In recent years, there has been some degree of hype associated with the capabilities of systems operating in these bands. Sometimes exorbitant claims have been made relative to the ability of these systems to see through walls, detect buried structures, and detect cancer cells, for example. In this chapter we shall examine some of these clams and assess their validity. We shall find that MMW and THz systems can do some amazing things, some of them not related to the above claims, and that there is substantial promise of even more interesting results. In this chapter we begin by discussing these atmospheric limitations, since they permeate the whole technology of MMW, sub-MMW, and THz technology. We then discuss MMW and THz sources, detectors, optics, and systems in separate sections. Finally, we present some results obtained using sensors operating in these bands. Perhaps the most interesting of these results demonstrate the capability to image objects at resolutions as good as λ/100, where λ is wavelength. These measurements show the connection between this sensor technology and applications to security.
机译:毫米波(MMW)频带从30 GHz扩展到300 GHz,该频谱的两端都有些模糊。太赫兹(THz)频段从大约200 GHz扩展到大约30 THz,尽管事实上该范围内的较低频率并非严格地为10〜(12)Hz或更高。这些频带也被不同地称为亚毫米,远红外和近毫米。近年来,在这些频段上运行的系统的功能已引起一定程度的炒作。例如,有时有人对这些系统穿透墙壁,检测掩埋结构和检测癌细胞的能力提出过高的要求。在本章中,我们将研究其中一些蛤c并评估其有效性。我们将发现MMW和THz系统可以做一些令人惊奇的事情,其中​​一些与上述主张无关,并且有可能获得更有趣的结果。在本章中,我们将从讨论这些大气限制开始,因为它们已渗透到MMW,sub-MMW和THz技术的整个技术中。然后,我们将在单独的部分中讨论MMW和THz光源,检测器,光学器件和系统。最后,我们介绍了使用在这些频段中运行的传感器获得的一些结果。这些结果中最有趣的也许是能够以高达λ/ 100的分辨率对物体成像的能力,其中λ是波长。这些测量结果表明了该传感器技术与安全应用之间的联系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号