A compact refractive index sensor with high sensitivity based on
The reflection angle of the tapered fiber excites the high order cladding mode to obtain a compact sensor size. A compact refractive index sensor is proposed and investigated based on
High sensitivity and large measurement range magnetic field micro-nano fiber (MFM-NF) sensor based on Mach-Zehnder interference has been proposed and demonstrated. This sensor is composed of micr.
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The reflection angle of the tapered fiber excites the high order cladding mode to obtain a compact sensor size. A compact refractive index sensor is proposed and investigated based on
Specialty fibers have enabled a wide range of sensing applications. Particularly, with the recent advancement of anti-resonant effects, specialty fibers
In conclusion, this paper presents an ultra-high-resolution and ultra-wide-dynamic-range fiber ring temperature sensor based on a continuous resonance peaks tracking technique for long
Highlights • This micro-displacement sensor has the advantages of large measurement range. • It has the characteristics of high coupling efficiency and long coupling distance. • The
This paper presents a novel approach utilizing the vernier effect of interference superposition, achieved through a double Fabry-Pérot interferometer (FPI) cavity constructed from a photopolymer self
In order to detect the refractive index (RI) of high refractive index materials such as trichlorobenzene and aniline in the near-infrared and mid
Here, we review the basic principles of microfiber-optic sensors based on a broad range of microstructures, nanostructures, and functional materials. We
A fiber-optic ultrasonic sensor based on a suspended-core fiber exhibited significantly improved spatial resolution (several to tens of microns) and detection sensitivity (signal-to-noise ratio > 80 dB) by
With extreme compression ratios of less than 0.1%, the system delivers high accuracy, low training costs, and high-speed processing.
Abstract Hollow-core anti-resonant optical fiber (HC-ARF) provides solutions for breaking the bottlenecks in areas of high-power transmission and high-efficiency optical waveguide.
Abstract—Photonic crystal fiber (PCF)-based plasmonic sensors have gained considerable attention because of their highly sen- Plasmonic Material Layer sitive performance and broad range of sensing
All these specifications, summarized to the high versatibility of Lab-on-Fiber technology, lead to a revolutionary and novel fibered E-field sensor which can be adapted to a broad range of
As a pivotal component in wearable electronics, flexible piezoresistive sensors encounter performance optimization constraints stemming from creep
Optical Fiber Displacement Sensors (OFDSs) provide several advantages over conventional sensors, including their compact size, flexibility,
A novel micro-displacement sensor with double optical fiber probes that has a simple manufacturing process, low cost, high sensitivity, and fast response speed, which is suitable for harsh environments
Developing iontronic pressure sensors with high sensitivity in a wide linear range can be challenging due to a trade-off between sensitivity and linear range. Here, authors bypass this
Abstract A fiber-optic extrinsic Fabry–Perot interferometric (EFPI) temperature sensor with extremely high resolution and large dynamic range is proposed and demonstrated.
We report ultra-stretchable and conductive fibers with a thermal drawing process, controlled and engineered for precise motion sensing. This approach enables uniform fibers with
Here, we propose a new sensing strategy utilizing the unique property of the dispersion turning point in an optical microfiber coupler mode interferometer.
High-temperature measurements above 1000 °C are critical in harsh environments such as aerospace, metallurgy, fossil fuel, and power production.
The concurrent attainment of high sensitivity and a large dynamic range in measuring parameters of interest holds paramount importance in sensor development. In this paper, we demonstrate a
This study proposes a compact fiber optic temperature sensor based on PDMS-coated Mach-Zehnder interferometer (MZI) combined with FBG, and it
High Sensitivity and Wide Strain Range Flexible Strain Sensor Based on CB/CNT/PDA/TPU Conductive Fiber Membrane
This article provides a new idea for achieving high-sensitivity fiber optic micro-displacement sensing with a large detection range. The sensor has low temperature crosstalk and high mechanical strength,
Surface plasmon resonance (SPR) has many applications in optical fiber sensing. Herein, a single-mode optical fiber refractive index sensor based on the SPR is designed and analyzed. The sensor
High sensitivity and large measurement range magnetic field micro-nano fiber (MFM-NF) sensor based on Mach-Zehnder interference has been proposed and demonstrated. This sensor is
Flexible strain sensors have attracted significant attention due to their critical applications in wearable devices, biological detection, and artificial
This study presents a breakthrough in flexible strain sensor technology with the development of an ultra-high sensitivity and wide-range