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Determination of the Excitation and Coupling Rates Between Light Emitters and Surface Plasmon Polaritons
Published on: July 21, 2018
Miniaturized broadband lowpass filter based on the integrated square dumbbell and meander structure spoof surface
Lingling Yang1, Wentao Ye2, Bin Cai2
1School of Electronic Engineering, Hubei Engineering Research Center for Intelligent Detection and Identification of Complex Parts, Wuhan Vocational College of Software and Engineering (Wuhan Open University), Wuhan, 430205, People's Republic of China.
Abstract:
A novel miniaturized broadband low-pass filter (LPF) is proposed based on the integrated square dumbbell and meander (SDBM) structure spoof surface plasmon polaritons (SSPPs). Compared with the conventional H-shaped and square dumbbell structure SSPP unit-cells, the integrated SDBM structure can effectively reduce its asymptotic frequency, revealing much better slow-wave characteristics. A broadband LPF is designed by integrating two types of SDBM structure SSPP unit-cell to enhance out-of-band suppression. Finite element method (FEM) simulations demonstrate that the SDBM structure SSPPs-based LPF exhibits excellent lowpass characteristics across a broadband range of 0-2.24 GHz, achieving a remarkably high out-of-band rejection level of - 27 dB in a broadband range of 2.39-8.7 GHz. An equivalent LC circuit model is established for the proposed SDBM-structured SSPPs-based LPF, exhibiting a reasonable consistency with the FEM results. The designed LPF is skillfully realized utilizing conventional PCB manufacturing techniques, achieving with a size of only 0.238λc × 0.12λc (λc is the wavelength at cut-off frequency). The experimental results exhibit a remarkable consistency with the simulated data, thereby validating the soundness and practicality of the proposed design. The proposed broadband LPF featuring robust out-of-band rejection, demonstrates significant potential for integration into compact microwave and terahertz (THz) circuits, paving the way for advanced applications in these frequency bands.

