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用于检测超低折射率材料中微小折射率变化的表面等离子体激元诱导透明传感器。

Plasmon-induced transparency sensor for detection of minuscule refractive index changes in ultra-low index materials.

作者信息

Farhadi Shahriar, Miri Mehdi, Farmani Ali

机构信息

School of Electrical and Computer Engineering, Shiraz University, Shiraz, Iran.

School of Electrical and Computer Engineering, Lorestan University, Khoramabad, Iran.

出版信息

Sci Rep. 2021 Nov 4;11(1):21692. doi: 10.1038/s41598-021-01246-x.

Abstract

Detection of low-index materials such as aerogels and also detection of refractive index variations in these materials is still a challenging task. Here, a high figure of merit (FOM) sensor based on plasmon-induced transparency (PIT) is proposed for the detection of aerogel refractive index changes. In the proposed PIT sensor, the transparency window in an opaque region arises from the coupling between surface plasmon polariton (SPP) mode and planar waveguide mode. By comprising sub-wavelength grating (SWG) in the planar waveguide region, the maximum of the electric field of waveguide occurs in a low index media. This facilitates detection of the aerogels when they are used as the low index material (sensing material). Application of the subwavelength grating waveguide also improves the sensitivity of the sensor by a factor of six compared to a conventional structure with a homogenous waveguide. The proposed structure has a quality factor of Q ≥ 1800, and a reflection of 86%, and can detect the refractive index changes as low as Δn = 0.002 (around n = 1.0). The lineshape, Q-factor, and resonant wavelength of the transparency spectrum can be controlled by tailoring the structural parameters. Our work also has potential application in switching, filtering, and spectral shaping.

摘要

检测气凝胶等低折射率材料以及这些材料中的折射率变化仍然是一项具有挑战性的任务。在此,提出了一种基于表面等离激元诱导透明(PIT)的高优值(FOM)传感器,用于检测气凝胶折射率的变化。在所提出的PIT传感器中,不透明区域中的透明窗口源于表面等离激元极化激元(SPP)模式与平面波导模式之间的耦合。通过在平面波导区域中包含亚波长光栅(SWG),波导电场的最大值出现在低折射率介质中。当气凝胶用作低折射率材料(传感材料)时,这有利于对其进行检测。与具有均匀波导的传统结构相比,亚波长光栅波导的应用还将传感器的灵敏度提高了六倍。所提出的结构具有Q≥1800的品质因数和86%的反射率,并且能够检测低至Δn = 0.002(在n = 1.0附近)的折射率变化。通过调整结构参数,可以控制透明光谱的线形、品质因数和谐振波长。我们的工作在开关、滤波和光谱整形方面也具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8153/8569208/4341c92dc0f4/41598_2021_1246_Fig1_HTML.jpg

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