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强耦合平面太赫兹超材料中由环形激发引起的多波段透明效应。

Multiband transparency effect induced by toroidal excitation in a strongly coupled planar terahertz metamaterial.

作者信息

Bhattacharya Angana, Sarkar Rakesh, Sharma Naval K, Bhowmik Bhairov K, Ahmad Amir, Kumar Gagan

机构信息

Department of Physics, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.

College of Information Technology, United Arab Emirates University, Al Ain, United Arab Emirates.

出版信息

Sci Rep. 2021 Sep 28;11(1):19186. doi: 10.1038/s41598-021-98498-4.

Abstract

The multiband transparency effect in terahertz (THz) domain has intrigued the scientific community due to its significance in developing THz multiband devices. In this article, we have proposed a planar metamaterial geometry comprised of a toroidal split ring resonator (TSRR) flanked by two asymmetric C resonators. The proposed geometry results in multi-band transparency windows in the THz region via strong near field coupling of the toroidal excitation with the dipolar C-resonators of the meta molecule. The geometry displays dominant toroidal excitation as demonstrated by a multipolar analysis of scattered radiation. High Q factor resonances of the metamaterial configuration is reported which can find significance in sensing applications. We report the frequency modulation of transparency windows by changing the separation between TSRR and the C resonators. The numerically simulated findings have been interpreted and validated using an equivalent theoretical model based upon three coupled oscillators system. Such modeling of toroidal resonances may be utilized in future studies on toroidal excitation based EIT responses in metamaterials. Our study has the potential to impact the development of terahertz photonic components useful in building next generation devices.

摘要

太赫兹(THz)频段的多频段透明效应因其在太赫兹多频段器件开发中的重要性而引起了科学界的关注。在本文中,我们提出了一种平面超材料结构,它由一个环形裂环谐振器(TSRR)和两侧的两个不对称C形谐振器组成。通过环形激励与超分子的偶极C形谐振器之间的强近场耦合,所提出的结构在太赫兹区域产生了多频段透明窗口。通过对散射辐射的多极分析表明,该结构表现出主导的环形激励。报道了超材料结构的高Q因子共振,这在传感应用中具有重要意义。我们报告了通过改变TSRR与C形谐振器之间的间距来实现透明窗口的频率调制。基于三个耦合振荡器系统的等效理论模型对数值模拟结果进行了解释和验证。这种环形共振的建模可用于未来基于超材料中环形激励的电磁诱导透明(EIT)响应的研究。我们的研究有可能影响用于构建下一代器件的太赫兹光子组件的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad9a/8478916/0ace61e1ea42/41598_2021_98498_Fig1_HTML.jpg

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