Mid-infrared plasmonic inductors: Enhancing inductance with meandering lines

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Abstract

We present a mid-infrared inductor that when applied to an extraordinary transmission hole array produces a strong redshift of the resonant peak accompanied by an unprecedented enlargement of the operation bandwidth. The importance of the result is twofold: from a fundamental viewpoint, the direct applicability of equivalent circuit concepts borrowed from microwaves is demonstrated, in frequencies as high as 17â€...THz upholding unification of plasmonics and microwave concepts and allowing for a simplification of structure design and analysis; in practical terms, a broadband funnelling of infrared radiation with fractional bandwidth and efficiency as high as 97% and 48%, respectively, is achieved through an area less than one hundredth the squared wavelength, which leads to an impressive accessible strong field localization that may be of great interest in sensing applications.

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Torres, V., Ortuño, R., Rodríguez-Ulibarri, P., Griol, A., Martínez, A., Navarro-Cía, M., … Sorolla, M. (2014). Mid-infrared plasmonic inductors: Enhancing inductance with meandering lines. Scientific Reports, 4. https://doi.org/10.1038/srep03592

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