2016Unpublished venueRequires access

High selective metamaterial resonator based on complementary split ring resonator

Dawei Zhang, Qun Wu, Kuang Zhang, Xumin Ding, Xuejun Sha

Open publisher page 2 citations

Abstract

In this work, a metamaterial resonator based on complementary split ring resonator (CSRR) loaded with square open-loop resonator (OLR) is presented theoretically and experimentally. It is shown through equivalent circuit model that the addition of OLR to the conventional CSRR-loaded cell generates transmission zero in the upper stop band and improves the upper band rejection level without increasing the traversal dimensions. Simulation results show that a passband with high selectivity is obtained. Moreover, the via-free characteristic of the basic cell enables easy and low-cost fabrication.

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What this paper is about

In this work, a metamaterial resonator based on complementary split ring resonator (CSRR) loaded with square open-loop resonator (OLR) is presented theoretically and experimentally. It is shown through equivalent circuit model that the addition of OLR to the conventional CSRR-loaded cell generates transmission zero in the upper stop band and improves the upper band rejection level without increasing the traversal dimensions. Simulation results show that a passband with high selectivity is obtained. Moreover, the via-free characteristic of the basic cell enables easy and low-cost fabrication.

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Available abstract

In this work, a metamaterial resonator based on complementary split ring resonator (CSRR) loaded with square open-loop resonator (OLR) is presented theoretically and experimentally. It is shown through equivalent circuit model that the addition of OLR to the conventional CSRR-loaded cell generates transmission zero in the upper stop band and improves the upper band rejection level without increasing the traversal dimensions. Simulation results show that a passband with high selectivity is obtained. Moreover, the via-free characteristic of the basic cell enables easy and low-cost fabrication.

Key concepts: Resonator, Passband, Metamaterial, Split-ring resonator, Optical ring resonators, Optoelectronics, Materials science, Equivalent circuit

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