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首页> 外文期刊>Journal of optics >Polarization independent double-band electromagnetically induced transparency effect in terahertz metamaterials
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Polarization independent double-band electromagnetically induced transparency effect in terahertz metamaterials

机译:太赫兹超材料的偏振独立双频电磁诱导透明度效应

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摘要

In this article, we experimentally and numerically investigated a metamaterial (MM) geometry capable of exhibiting polarization independent double-band electromagnetic induced transparency (EIT) effect. The meta-molecule unit of the proposed MM configuration composed of a strip and two asymmetric split ring resonators (SRRs). For polarization independent double-band EIT effect, the existing meta-molecule unit is converted into a cross-like structure adorned with four SRRs. Terahertz transmission response is analyzed for two orthogonal polarization directions of the incident light to confirm the polarization independent response. In order to understand and explain our numerical findings more elaborately we have employed four-level tripod atomic system based analytical model. The transmission response is also analyzed for different angle of incidence of the two orthogonal polarizations. In order to demonstrate the practical applicability of our study, we have studied the effect of transmission with the change of refractive index of analyte of thickness 10 mu m coated on the top of the MM resonators. The calculated sensitivities for the 1st, 2nd and 3rd dips are 121 GHz/RIU, 138 GHz/RIU and 135 GHz/RIU (RIU, refractive index unit) respectively. Our study can also play an important role in the advancement of slow light devices, modulators and filters.
机译:在本文中,我们通过实验和数值研究了能够表现出偏振独立双频电磁诱导透明度(EIT)效应的超级材料(MM)几何体。所提出的MM构造的元分子单元由条带和两个不对称的分体环谐振器(SRRS)组成。对于偏振独立的双带EIT效应,现有的元分子单元被转换成用四个SRRS装饰的交叉结构。针对入射光的两个正交偏振方向分析太赫兹传输响应,以确认偏振独立响应。为了理解和解释我们的数值发现更精心,我们已经采用了基于四级三级原子系统的分析模型。还针对两个正交偏振的不同入射角分析传输响应。为了证明我们的研究的实际适用性,我们研究了传播与涂布在MM谐振器顶部的厚度10μm的分析物的折射率变化的影响。第1,第2和第3次倾斜的计算灵敏度分别是121GHz / RIU,138GHz / RIU和135GHz / RIU(RIU,折射率单位)。我们的研究也可以在慢灯装置,调制器和过滤器的进步方面发挥重要作用。

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