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基于表面等离子体阵列与介质波导交替耦合的表面增强拉曼光谱远程检测研究

Surface-enhanced Raman spectroscopy long-range detection investigation based on the alternating coupling of a surface plasmonic array and dielectric waveguide.

作者信息

Lai Chunhong, Zhang Zhijun, Jiang Xiaoming, Wen Jing, Zeng Cheng, Li Yuanrui

出版信息

Appl Opt. 2023 May 20;62(15):3976-3981. doi: 10.1364/AO.489036.

Abstract

Surface-enhanced Raman spectroscopy (SERS) is widely used to detect low-concentration samples in biology, medicine, etc. We design and theoretically investigate a SERS sensor with a surface plasmonic array coupled alternately with a dielectric waveguide. The effect of the incident angle on the coupling efficiency of an evanescent field is systematically studied. The results show that the maximum evanescent field coupling efficiency can be obtained at an incident angle of 66°. The proposed SERS sensor has a transmission length of 1.027 cm and a high enhancement performance with an enhancement factor of 1.574×10 at a wavelength of 633 nm. The integration of this SERS sensor with a metal array and a dielectric waveguide prevents the direct illumination of the sample molecules by the excited light. Furthermore, the long-range nondestructive detection of the SERS signals of the low-concentration sample molecules can be achieved.

摘要

表面增强拉曼光谱(SERS)被广泛用于检测生物学、医学等领域中的低浓度样品。我们设计并从理论上研究了一种表面等离子体阵列与介质波导交替耦合的SERS传感器。系统地研究了入射角对倏逝场耦合效率的影响。结果表明,在入射角为66°时可获得最大倏逝场耦合效率。所提出的SERS传感器的传输长度为1.027厘米,在633纳米波长下具有1.574×10的增强因子,增强性能高。这种SERS传感器与金属阵列和介质波导的集成可防止激发光对样品分子的直接照射。此外,还可实现对低浓度样品分子SERS信号的远程无损检测。

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