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利用切割线夹层结构定制吸收太赫兹超材料的极化和磁化。

Tailoring polarization and magnetization of absorbing terahertz metamaterials using a cut-wire sandwich structure.

作者信息

Yudistira Hadi Teguh, Liu Shuo, Cui Tie Jun, Zhang Han

机构信息

SZU-NUS Collaborative Innovation Centre for Optoelectronic Science & Technology and Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University (SZU), Shenzhen 518060, China.

Mechanical Engineering Program, Institut Teknologi Sumatera (ITERA), Lampung 35365, Indonesia.

出版信息

Beilstein J Nanotechnol. 2018 May 16;9:1437-1447. doi: 10.3762/bjnano.9.136. eCollection 2018.

Abstract

The permittivity and permeability of a cut-wire sandwich structure can be controlled by laterally shifting the upper and lower layers. The use of this process for designing specific application-oriented devices may lack clear-cut guidelines because the lateral misalignment will significantly change the permittivity and permeability simultaneously. Therefore, in this work, we designed, fabricated and characterized a cut-wire sandwich device capable of tailoring the polarization and magnetization separately, thereby providing a promising recipe for achieving specific application objectives, such as a high-performance absorber. Accumulated charges effectively provided the polarization at the edge of cut-wires, and the surface current density on the cut-wires at top and bottom layers effectively generated the magnetization. By controlling and optimizing the geometrical configurations of the entire sandwich device (without lateral misalignment), the impedance could be matched to that of free space while generating a large imaginary part in the refractive index. This work characterizes the absorption performance of such sandwich structures in the terahertz regime. This mechanism could be further extended to other metamaterial devices in the terahertz and other frequency ranges because polarization and magnetization can now be selectively controlled in a straightforward manner.

摘要

通过横向移动上下层,可以控制切割线夹层结构的介电常数和磁导率。由于横向错位会同时显著改变介电常数和磁导率,因此使用此工艺设计特定的面向应用的器件可能缺乏明确的指导方针。因此,在这项工作中,我们设计、制造并表征了一种能够分别调整极化和磁化的切割线夹层器件,从而为实现特定的应用目标(如高性能吸收体)提供了一种有前景的方法。累积电荷有效地在切割线边缘提供了极化,顶层和底层切割线上的表面电流密度有效地产生了磁化。通过控制和优化整个夹层器件的几何结构(无横向错位),可以使阻抗与自由空间的阻抗匹配,同时在折射率中产生较大的虚部。这项工作表征了此类夹层结构在太赫兹波段的吸收性能。由于现在可以以直接的方式选择性地控制极化和磁化,这种机制可以进一步扩展到太赫兹及其他频率范围内的其他超材料器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6cc/6009223/f20ab24a5a02/Beilstein_J_Nanotechnol-09-1437-g002.jpg

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