期刊
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS
卷 38, 期 9, 页码 2536-2542出版社
Optica Publishing Group
DOI: 10.1364/JOSAB.433055
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资金
- Postdoctoral Preferred Funding Research Project of Hebei Province [B2018003008]
- Natural Science Foundation of Hebei Province [F2020203050]
- NationalNatural Science Foundation of China [12074331]
A fiber optic SPR sensor proposed in this paper demonstrates high sensitivity and linearity for RI detection of liquid samples. With advantages of simple structure, small volume, low cost, and wide detection range, the sensor shows great potential in various applications.
Owing to their high sensitivity, surface plasmon resonance (SPR)-based sensors depict broad application prospects in biochemical detection, environmental monitoring, and food safety. In this paper, an optical fiber-based SPR sensor is proposed and demonstrated for the refractive index (RI) detection of liquid samples. This sensor is composed of a multimode fiber (MMF), a no-core fiber (NCF), and another MMF that is connected in sequence. The length of the NCF is 2 cm. A thin silver film is deposited on the NCF surface to stimulate the SPR effect. Experimental results indicated that the shift amount of resonance dip wavelength is as high as 303.6 nm as RI increases from 1.333 to 1.4107. A sensitivity of 2507.58 nm/RIU with a fitting linearity R-2 of 0.9931 is obtained in the lower RI region of 1.333-1.3723, while the sensitivity and R-2 reaches 5228.21 nm/RIU and 0.97395, respectively, in the higher RI region of 1.3723-1.4107. Compared with previously reported RI sensors, the proposed fiber optic SPR sensor exhibits the advantages of simple structure, small volume, low cost, high sensitivity, and wide detection range. (C) 2021 Optical Society of America
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