Algorri José Francisco, Zografopoulos Dimitrios C, Ferraro Antonio, García-Cámara Braulio, Vergaz Ricardo, Beccherelli Romeo, Sánchez-Pena José Manuel
GDAF-UC3M, Displays and Photonics Applications Group, Department of Electronic Technology, Carlos III University of Madrid, Leganés, 28911 Madrid, Spain.
Consiglio Nazionale delle Ricerche, Istituto per la Microelettronica e Microsistemi, 00133 Rome, Italy.
Nanomaterials (Basel). 2018 Dec 27;9(1):30. doi: 10.3390/nano9010030.
This work proposes the use of the refractive index sensitivity of non-radiating anapole modes of high-refractive-index nanoparticles arranged in planar metasurfaces as a novel sensing principle. The spectral position of anapole modes excited in hollow silicon nanocuboids is first investigated as a function of the nanocuboid geometry. Then, nanostructured metasurfaces of periodic arrays of nanocuboids on a glass substrate are designed. The metasurface parameters are properly selected such that a resonance with ultrahigh -factor, above one million, is excited at the target infrared wavelength of 1.55 µm. The anapole-induced resonant wavelength depends on the refractive index of the analyte superstratum, exhibiting a sensitivity of up to 180 nm/RIU. Such values, combined with the ultrahigh -factor, allow for refractometric sensing with very low detection limits in a broad range of refractive indices. Besides the sensing applications, the proposed device can also open new venues in other research fields, such as non-linear optics, optical switches, and optical communications.
这项工作提出将排列在平面超表面中的高折射率纳米粒子的非辐射无偶极模式的折射率灵敏度用作一种新型传感原理。首先研究了在空心硅纳米立方块中激发的无偶极模式的光谱位置与纳米立方块几何形状的函数关系。然后,设计了玻璃基板上纳米立方块周期性阵列的纳米结构超表面。适当选择超表面参数,以便在目标红外波长1.55 µm处激发具有超过一百万的超高品质因数的共振。无偶极诱导的共振波长取决于分析物上层的折射率,灵敏度高达180 nm/RIU。这些值与超高品质因数相结合,使得在很宽的折射率范围内能够以非常低的检测限进行折射传感。除了传感应用外,所提出的器件还可以在其他研究领域开辟新途径,如非线性光学、光开关和光通信。