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Mid-infrared plasmonic inductors: Enhancing inductance with meandering lines

机译:中红外等离激元电感器:通过曲折线增强电感

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摘要

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 17 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.
机译:我们提出了一种中红外电感器,当将其应用到非凡的传输孔阵列时,会产生谐振峰的强烈红移,并伴随着前所未有的工作带宽增大。结果的重要性是双重的:从根本上讲,证明了从微波借用的等效电路概念的直接适用性,在高达17 THz的频率下,保持了等离子体和微波概念的统一,并简化了结构设计和分析;实际上,通过小于波长平方的一百分之一的区域实现了分数带宽和效率分别高达97%和48%的红外辐射宽带漏斗,这导致了令人印象深刻的可访问强场定位,在传感应用中引起极大兴趣。

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