Multi-Parameter Detection Based on U-Shaped Biomimetic Optical Fiber Sensor
Flow velocity, direction, and salinity are essential parameters for underwater environmental monitoring. However, current methods face significant challenges in achieving
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Flow velocity, direction, and salinity are essential parameters for underwater environmental monitoring. However, current methods face significant challenges in achieving
In this paper, we propose a method for fabricating a U-bend optical fiber magnetic field sensor. The working principle of the sensor is based on the use of bending to induce a whispering
Abstract This paper presents a compact and sensitive side-tapered U-shaped polymer optical fiber (POF) sensor for fluoride detection in water. The sensor design combines tapering with a U-shaped
The U-shaped fiber configuration represents the elementary form of micro-displacement sensing, characterized by its exceptional freedom and flexibility. The study proposes the U-shaped
The advantages of fiber optic sensors over electrical sensors are discussed, while electrochemical stability issues of fiber-implanted batteries are critically assessed.
In summary, the fabrication and characterization of a U-shaped fiber optic pH sensor based on evanescent wave absorption and sol–gel immobilization technique have been carried out.
The study proposes a small U-shaped bending-induced interference optical fiber sensor; this novel sensor is a probe-type sensor manufactured using a mechanical device, a heat source,
Evanescent wave optical fibre sensors have attracted a lot of attention for the detection of chemical species due to their sensitivity, selectivity, and repeatability. In addition, plastic optical fibre
In the present paper, a novel fiber optic RI device, which combines low cost, high resolution, simplicity of design and miniaturized in structure has been described. The sensor consists
This work presents an evanescent wave-based U-shaped plastic optical fiber sensor. The effect of bend-induced material deformation on numerical aperture (N.A) and V-number has
In this work, the fabrication method of a U-shaped optical fiber (UOF) structure using single-mode fiber is proposed. Few UOF sensors have been developed to date, but the fabrication
This provides an experimental reference for further understanding the characteristics of U-shaped fiber structures and applying its application in micro-displacement sensing.
This paper proposes a high-sensitivity U-shaped optical fiber sensor based on indium tin oxide (ITO) for surface plasmon resonance (SPR) sensing. Finite element simulations reveal that
To achieve highly sensitive measurements of strain, a U-shaped optical fiber sensor (OFS) based on seven-core photonic crystal fiber (SCPCF) was designed. The proposed Mach-Zehnder-based
Automated bending process produced a U-shaped silica optical fiber probe with reduced variability. CO 2 laser cutting made fiber probe ends smoother and improved their surface quality.
Sensor performance optimization is based on the principles of the associated sensing mechanisms. This paper is the second part of a review on U-shaped FOSs and discusses the sensing mechanisms,
In this paper, we propose and demonstrate a small U-shaped optical fiber displacement sensor. It does not need any special treatments including splicing, tapering, or flame heating, and it can be
This chapter provides an in-depth exploration of U-type fiber optic sensors and their applications in SPR sensing. Initially, the fundamental principles of U-type fiber optic sensors are
A wide range of geometrical deformations of fiber optic sensors (FOSs) have been explored to improve their performance. In particular, fiber optics bent into a U-shape present various
Abstract Fiber Optic Shape Sensing is an innovative Optical Fiber Sensing Technology that uses a fiber optic cable to continuously track the 3D shape and position of a dynamic object (with
Fiber optic sensors have gained popularity over the last few decades. This is due to their numerous advantages, such as good metrological parameters, biocompatibility and resistance to
Abstract With the urgent demand of low concentration molecular detection, an innovative solution is presented to improve the sensitivity of surface plasmon resonance (SPR) sensors through
A simple structure and easily fabricated displacement sensor was proposed and demonstrated based on a bending-induced fiber interferometer. In the design, the fiber interferometer
The sensor has advantages of high stability and good reproducibility in practical applications, exhibiting a relative standard deviation (RSD) of 0.0062% and 2.3445% respectively in
Repeatability tests show a low relative standard deviation (RSD) of 0.4236% for RI measurements, with a maximum error of 0.00018 RIU, confirming excellent stability. The ITO
This review outlines the theoretical model and design considerations along with the fabrication process of U-shaped FOSs.