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太赫兹宽频带准全向平板超材料吸波体的设计
引用本文:顾超,屈绍波,裴志斌,徐 卓,柏 鹏,彭卫东,林宝勤,周航. 太赫兹宽频带准全向平板超材料吸波体的设计[J]. 红外与毫米波学报, 2011, 30(4): 350-353
作者姓名:顾超  屈绍波  裴志斌  徐 卓  柏 鹏  彭卫东  林宝勤  周航
作者单位:1. 空军工程大学理学院,陕西西安,710051
2. 空军工程大学理学院,陕西西安710051;西安交通大学电子陶瓷与器件教育部重点实验室,陕西西安710049
3. 空军工程大学综合电子信息系统与电子对抗技术研究中心,陕西西安,710051
基金项目:国家自然科学基金(批准号:60871027, 60901029, 61071058),国家重点基础研究发展计划(批准号:2009CB623306)和陕西省自然科学基金(批准号:SJ08F01)资助的课题.
摘    要:在太赫兹波段设计了一种宽频带准全向的平板超材料吸波体.仿真结果表明,该吸波体在4.36~4.91THz之间具有极化不敏感和宽入射角的强吸收.提取的等效阻抗实部表明,可以通过调节超材料的电磁响应造成吸波体一侧与自由空间近似阻抗匹配、另一侧与自由空间阻抗不匹配,从而在吸收频带内同时实现反射率和传输率最小、吸收率最大.仿真的...

关 键 词:太赫兹  宽频带  极化不敏感  宽入射角
收稿时间:2010-07-18
修稿时间:2011-04-08

Design of a wide-band and quasi-omnidirectional tabulate metamaterial absorber in the terahertz
GU Chao,QU Shao-Bo,PEI Zhi-Bin,XU Zhuo,BAI Peng,PENG Wei-Dong,LIN Bao-Qin and ZHOU Hang. Design of a wide-band and quasi-omnidirectional tabulate metamaterial absorber in the terahertz[J]. Journal of Infrared and Millimeter Waves, 2011, 30(4): 350-353
Authors:GU Chao  QU Shao-Bo  PEI Zhi-Bin  XU Zhuo  BAI Peng  PENG Wei-Dong  LIN Bao-Qin  ZHOU Hang
Affiliation:GU Chao1,QU Shao-Bo1,2,PEI Zhi-Bin1,XU Zhuo2,BAI Peng3,PENG Wei-Dong3,LIN Bao-Qin1,ZHOU Hang1(1.College of Science,Air Force Engineering University,Xi'an 710051,China,2.Key Laboratory of Electronic Materials Research of Ministry of Education,Xi'an Jiaotong University,Xi'an 710049,3.Research Center of Synthetic Electronic Information System and Electronic countermeasure,China)
Abstract:We report the design of a wide-band and quasi-omnidirectional tabulate metamaterial absorber in the terahertz regime. Simulated results indicate that the absorber has a wide-band strong absorption between 4.36 and 4.91 THz, which is polarization-insensitive and wide-angle. Retrieved real parts of the impedance show that by adjusting the electromagnetic response of the metamaterial, the impedance of the absorber could be tuned to match approximatively the impedance of the free space on the one side and do not match to the impedance of the free space on the other side, resulting in the minimal reflectance, the minimal transmission and the highest absorbance in the absorption band. Simulated absorbance values under three different loss conditions suggest that high absorbance is mainly due to metallic absorption and dielectric loss can be used to absorb partial energy if no metallic absorption. Simulated absorbance values under different electric conductivity values and copper thicknesses suggest that the intensity of metallic absorption can be boosted up by adopting metal of high conductivity or reducing the thickness of metal properly. This absorber may have broad applications in many scientific and technological fields.
Keywords:terahertz   wide-band   polarization-insensitive   wide-angle
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