首页> 外文会议>Conference on terahertz emitters, receivers, and applications >Terahertz Coded Aperture Mask using a Vanadium Dioxide Bowtie Antenna Array
【24h】

Terahertz Coded Aperture Mask using a Vanadium Dioxide Bowtie Antenna Array

机译:使用二氧化钒领结天线阵列的太赫兹编码孔径掩模

获取原文

摘要

Terahertz imaging systems have received substantial attention from the scientific community for their use in astronomy, spectroscopy, plasma diagnostics and security. One approach to designing such systems is to use focal plane arrays. Although the principle of these systems is straightforward, realizing practical architectures has proven deceptively difficult. A different approach to imaging consists of spatially encoding the incoming flux of electromagnetic energy prior to detection using a reconfigurable mask. This technique is referred to as "coded aperture" or "Hadamard" imaging. This paper details the design, fabrication and testing of a prototype coded aperture mask operating at WR-1.5 (500-750 GHz) that uses the switching properties of vanadium dioxide(VO_2). The reconfigurable mask consists of bowtie antennas with vanadium dioxide VO_2 elements at the feed points. Prom the symmetry, a unit cell of the array can be represented by an equivalent waveguide whose dimensions limit the maximum operating frequency. In this design, the cutoff frequency of the unit cell is 640 GHz. The VO_2 devices are grown using reactive-biased target ion beam deposition. A reflection coefficient (S_(11)) measurement of the mask in the WR-1.5 (500-750 GHz) band is conducted. The results are compared with circuit models and found to be in good agreement. A simulation of the transmission response of the mask is conducted and shows a transmission modulation of up to 28 dB. This project is a first step towards the development of a full coded aperture imaging system operating at WR-1.5 with VO_2 as the mask switching element.
机译:太赫兹成像系统因其在天文学,光谱学,等离子体诊断和安全性方面的使用而受到科学界的广泛关注。设计这种系统的一种方法是使用焦平面阵列。尽管这些系统的原理很简单,但是事实证明,实现实用的体系结构看似困难。一种不同的成像方法包括在使用可重新配置的遮罩进行检测之前,对进入的电磁能通量进行空间编码。该技术称为“编码孔径”或“ Hadamard”成像。本文详细介绍了在WR-1.5(500-750 GHz)下工作的原型编码孔径掩模的设计,制造和测试,该掩模利用了二氧化钒(VO_2)的开关特性。可重新配置的掩码由在馈电点带有二氧化钒VO_2元素的领结天线组成。证明对称性,可以用等效波导来表示阵列的晶胞,其尺寸限制了最大工作频率。在此设计中,单位单元的截止频率为640 GHz。 VO_2器件是使用反应性偏置靶离子束沉积来生长的。进行WR-1.5(500-750 GHz)频带中的掩模的反射系数(S_(11))测量。将结果与电路模型进行比较,发现结果吻合良好。进行了掩模的传输响应的仿真,并显示了高达28 dB的传输调制。该项目是开发以VO_2为掩模开关元件,以WR-1.5运行的全编码孔径成像系统的第一步。

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