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High-performance polarization-controlled terahertz spoof surface plasmon polaritons metacoupler

机译:高性能极化控制太赫兹欺骗表面等离激元极化子耦合器

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In this paper, a linear polarization-controlled (LPC) spoof surface plasmon polaritons (SSPPs) meta-coupler with high efficiency and directionality is proposed and demonstrated in the terahertz (THz) regime. By changing the polarization (TE or TM polarization) of the incident electromagnetic (EM) waves, the corresponding SSPPs can be directionally excited towards opposite directions. The meta-coupler is composed of a coupling metasurface (CM) and two propagating metasurfaces (PMs) on both sides of CM. Under the illumination of specified polarization Gaussian beam, the unit cells of the CMs have the similar electric field distribution with that of PMs, which can realize a smooth and efficient transition between the surface waves and SSPPs. The respective excitation efficiency of the TE and TM polarization can reach up to 87% and 90% at the frequency of 0.355 THz. Besides, the PMs are designed to support the propagation of the specified TE or TM mode SSPPs. This guarantees a relatively high directionality (> 24 dB) in the frequency range of 0.325-0.375 THz. Our study may open up new routes for polarization-related antennas, detectors and other practical THz devices.
机译:在本文中,提出了一种具有高效率和方向性的线性偏振控制(LPC)欺骗表面等离子体(SSPPS)元耦合器,并在Terahertz(THz)方案中说明。通过改变入射电磁(EM)波的偏振(TE或TM偏振),相应的SSPP可以向相反方向方向被定向激发。元耦合器由耦合元表面(cm)和厘米的两侧的两个传播元锉(PMS)组成。在指定偏振高斯光束的照明下,CMS的单元电池具有与PMS相似的电场分布,这可以实现表面波和SSPP之间的平滑和有效的转变。 TE和TM偏振的各自的激发效率可以在0.355至5至THz的频率下达到高达87%和90%。此外,PMS旨在支持指定TE或TM模式SSPP的传播。这保证了频率范围为0.325-0.375 THz的相对高的方向(> 24 dB)。我们的研究可以为偏振相关的天线,探测器和其他实用THz设备开辟新的路线。

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