DocumentCode :
1984473
Title :
Electric and magnetic resonances in broadside coupled split ring resonators: An extended mode-expansion theory
Author :
Huang, Xueqin ; Zhang, Yi ; Chui, S.T. ; Zhou, L.
Author_Institution :
Phys. Dept., Fudan Univ., Shanghai
fYear :
2008
fDate :
9-12 Nov. 2008
Firstpage :
102
Lastpage :
103
Abstract :
We extend the previously established mode-expansion theory to study the eigenmodes of metallic ring systems made by thin wires possessing film-like rectangular cross sections. Applications of the theory to a single split ring resonator (SRR) yield essentially the same results with finite-difference-time-domain (FDTD) simulations on realistic structures, which justify some basic assumptions adopted in the theory. We then apply the theory to study the resonance properties of a double-stack SRR, and show that such a planar resonator exhibits magnetic responses along all three dimensions under different conditions. FDTD simulations on realistic structures are performed to successfully verify the predictions based on the extended mode-expansion theory, and reveal that mutual-SRR interactions in a periodic SRR array may lead to a significant change of the eigenmode properties, including a reversal of the frequency sequence for two resonance modes.
Keywords :
coupled mode analysis; eigenvalues and eigenfunctions; finite difference time-domain analysis; resonators; FDTD simulations; coupled split ring resonators; eigenmodes; electric resonance; finite-difference-time-domain simulations; magnetic resonance; metallic ring systems; mode expansion theory; planar resonator; Couplings; Finite difference methods; Frequency; Magnetic properties; Magnetic resonance; Optical ring resonators; Periodic structures; Predictive models; Time domain analysis; Wires;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Metamaterials, 2008 International Workshop on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-2608-9
Electronic_ISBN :
978-1-4244-2609-6
Type :
conf
DOI :
10.1109/META.2008.4723546
Filename :
4723546
Link To Document :
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