Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators

The rapid development of terahertz technology in recent years has provided a basis for the application of terahertz technology. Because of the unique superiority and huge application prospects of terahertz in many important fields, it is gradually revealed. According to previous data, it is shown th...

وصف كامل

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Dong, Zihao
مؤلفون آخرون: Luo Yu
التنسيق: Thesis-Master by Coursework
اللغة:English
منشور في: Nanyang Technological University 2020
الموضوعات:
الوصول للمادة أونلاين:https://hdl.handle.net/10356/142069
الوسوم: إضافة وسم
لا توجد وسوم, كن أول من يضع وسما على هذه التسجيلة!
المؤسسة: Nanyang Technological University
اللغة: English
id sg-ntu-dr.10356-142069
record_format dspace
spelling sg-ntu-dr.10356-1420692023-07-04T16:47:22Z Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators Dong, Zihao Luo Yu School of Electrical and Electronic Engineering luoyu@ntu.edu.sg Engineering::Electrical and electronic engineering The rapid development of terahertz technology in recent years has provided a basis for the application of terahertz technology. Because of the unique superiority and huge application prospects of terahertz in many important fields, it is gradually revealed. According to previous data, it is shown that metamaterials with specific structures can induce the multipolar spoof localized surface plasmons. Last semester we have formed a self-similar chain based on ultra-thin circular spiral structures as plasmonic resonators. Use the superfocus effect to achieve terahertz through CST studio simulation software. The energy of the band is strengthened. This article is mainly based on circular plasmonic resonators. We have also designed square and asymmetric plasmonic resonators for comparison. Master of Science (Electronics) 2020-06-15T07:46:41Z 2020-06-15T07:46:41Z 2020 Thesis-Master by Coursework https://hdl.handle.net/10356/142069 en ISM-DISS-01651 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
spellingShingle Engineering::Electrical and electronic engineering
Dong, Zihao
Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
description The rapid development of terahertz technology in recent years has provided a basis for the application of terahertz technology. Because of the unique superiority and huge application prospects of terahertz in many important fields, it is gradually revealed. According to previous data, it is shown that metamaterials with specific structures can induce the multipolar spoof localized surface plasmons. Last semester we have formed a self-similar chain based on ultra-thin circular spiral structures as plasmonic resonators. Use the superfocus effect to achieve terahertz through CST studio simulation software. The energy of the band is strengthened. This article is mainly based on circular plasmonic resonators. We have also designed square and asymmetric plasmonic resonators for comparison.
author2 Luo Yu
author_facet Luo Yu
Dong, Zihao
format Thesis-Master by Coursework
author Dong, Zihao
author_sort Dong, Zihao
title Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
title_short Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
title_full Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
title_fullStr Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
title_full_unstemmed Subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
title_sort subwavelength focusing of terahertz waves using self-similar chain of designer plasmon resonators
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/142069
_version_ 1772827439500623872