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Plasmonic mode interferences and Fano resonances in Metal-Insulator- Metal nanostructured interface

机译:金属-绝缘体-金属纳米结构界面中的等离子模式干扰和Fano共振

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摘要

Metal-insulator-metal systems exhibit a rich underlying physics leading to a high degree of tunability of their spectral properties. We performed a systematic study on a metal-insulator-nanostructured metal system with a thin 6 nm dielectric spacer and showed how the nanoparticle sizes and excitation conditions lead to the tunability and coupling/decoupling of localized and delocalized plasmonic modes. We also experimentally evidenced a tunable Fano resonance in a broad spectral window 600 to 800 nm resulting from the interference of gap modes with white light broad band transmitted waves at the interface playing the role of the continuum. By varying the incident illumination angle shifts in the resonances give the possibility to couple or decouple the localized and delocalized modes and to induce a strong change of the asymmetric Fano profile. All these results were confirmed with a crossed comparison between experimental and theoretical measurements, confirming the nature of different modes. The high degree of control and tunability of this plasmonically rich system paves the way for designing and engineering of similar systems with numerous applications. In particular, sensing measurements were performed and a figure of merit of 3.8 was recorded ranking this sensor among the highest sensitive in this wavelength range.
机译:金属-绝缘体-金属系统具有丰富的底层物理特性,因此其光谱特性具有高度的可调谐性。我们对具有6 nm薄介电间隔物的金属-绝缘体-纳米结构金属系统进行了系统研究,并显示了纳米粒子的尺寸和激发条件如何导致局部和离域等离激元模式的可调谐性和耦合/去耦。我们还通过实验证明了在600至800 nm的宽光谱窗口中,由于间隙模式对界面处的白光宽带传输波的干扰而产生的可调谐Fano共振起着连续体的作用。通过改变入射照明角度,谐振中的位移提供了耦合或解耦局域模式和局域模式的可能性,并引起非对称Fano轮廓的强烈变化。所有这些结果都通过实验和理论测量之间的交叉比较得到了证实,从而证实了不同模式的性质。这种富含等离子体的系统的高度控制和可调谐性为具有众多应用的类似系统的设计和工程铺平了道路。特别是,执行了感测测量,并记录了3.8的品质因数,使该传感器在该波长范围内具有最高灵敏度。

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