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      High-Sensitivity and Direction Recognizable SPR Microdisplacement Sensor Based on Fiber V-Groove

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          Most cited references14

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          Theoretical Design of a High Sensitivity SPR-Based Optical Fiber Pressure Sensor

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            High-precision micro-displacement optical-fiber sensor based on surface plasmon resonance.

            We propose and demonstrate a novel optical-fiber micro-displacement sensor based on surface plasmon resonance (SPR) by fabricating a Kretschmann configuration on graded-index multimode fiber (GIMMF). We employ a single-mode fiber to change the radial position of the incident beam as the displacement. In the GIMMF, the angle between the light beam and fiber axis, which is closely related to the resonance angle, is changed by the displacement; thus, the resonance wavelength of the fiber SPR shifts. This micro-displacement fiber sensor has a wide detection range of 0-25 μm, a high sensitivity with maximum up to 10.32 nm/μm, and a nanometer resolution with minimum to 2 nm, which transcends almost all of other optical-fiber micro-displacement sensors. In addition, we also research that increasing the fiber polishing angle or medium refractive index can improve the sensitivity. This micro-displacement sensor will have a great significance in many industrial applications and provide a neoteric, rapid, and accurate optical measurement method in micro-displacement.
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              A Highly Sensitive Fibre-Optic Nano-Displacement Sensor Based on Surface Plasmon Resonance

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                Author and article information

                Contributors
                Journal
                IEEE Sensors Journal
                IEEE Sensors J.
                Institute of Electrical and Electronics Engineers (IEEE)
                1530-437X
                1558-1748
                2379-9153
                March 1 2023
                March 1 2023
                : 23
                : 5
                : 4856-4862
                Affiliations
                [1 ]College of Electronic and Information Engineering, Chongqing Three Gorges University, Chongqing, China
                [2 ]Key Laboratory of In-fiber Integrated Optics, Ministry of Education of China, Harbin Engineering University, Harbin, China
                Article
                10.1109/JSEN.2023.3238071
                5b29d464-a8b3-412d-a5ff-20d9c12642e0
                © 2023

                https://ieeexplore.ieee.org/Xplorehelp/downloads/license-information/IEEE.html

                https://doi.org/10.15223/policy-029

                https://doi.org/10.15223/policy-037

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