In this article, we present the sensing charac-teristics of a fiber Bragg grating (FBG) based Fabry-Perot (FP) structure in an acrylate coated biconical tapered fiber. The fiber-diameter was tapered down to 70μm using flame brushing technique followed by point-by-point writing of the FP structure within the fiber core using infrared femtosecond laser pulse irradiation. The sensing structure consists of two identical gratings separated by a small gap. The strain characteristics, ranging up to 3440μϵ, and the temperature characteristics, ranging up to 225 °C, have been investigated. The sensing sensitivities for strain and temperature were found out to be 2.32 pm/μϵ and 8.86 pm/°C, respectively
We report a high-temperature fiber-optic sensor based on measuring the spectral fringes of a Fabry–P...
Type I fiber Bragg gratings (FBG) written through the coating of various off-the-shelf silica fibers...
As a novel sensing element, fiber Bragg grating (FBG) is sensitive to both temperature and strain. B...
A temperature fiber sensor based on tapered fiber Bragg grating (tapered FBG) fabricated by femtosec...
Fabry-Perot cavity (FPC) based on Fiber Bragg gratings (FBGs) is an excellent candidate for fiber se...
A novel and short (5 mm long) fiber grating based sensor with a fiber grating Fabry–Perot cavity (GF...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
Accurate measurement of strain is one of the most important issues for high temperature environments...
This research demonstrates how low loss commercially available multi-mode (MM), perfluorinated polym...
Fiber optic sensors have been one of the fastest developing research areas in optics during the past...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
Refractive index sensing has been bringing tremendous convenience, enabling the identification of co...
We propose a novel tilted long period fiber grating (TLPFG) design, inscribed using a line-by-line i...
In this paper, a Fabry-Perot interferometer structure (FPIS) cascaded with a regenerated grating (RG...
We present a strain and temperature polymer fiber sensor with exceptional optical properties based o...
We report a high-temperature fiber-optic sensor based on measuring the spectral fringes of a Fabry–P...
Type I fiber Bragg gratings (FBG) written through the coating of various off-the-shelf silica fibers...
As a novel sensing element, fiber Bragg grating (FBG) is sensitive to both temperature and strain. B...
A temperature fiber sensor based on tapered fiber Bragg grating (tapered FBG) fabricated by femtosec...
Fabry-Perot cavity (FPC) based on Fiber Bragg gratings (FBGs) is an excellent candidate for fiber se...
A novel and short (5 mm long) fiber grating based sensor with a fiber grating Fabry–Perot cavity (GF...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
Accurate measurement of strain is one of the most important issues for high temperature environments...
This research demonstrates how low loss commercially available multi-mode (MM), perfluorinated polym...
Fiber optic sensors have been one of the fastest developing research areas in optics during the past...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
Refractive index sensing has been bringing tremendous convenience, enabling the identification of co...
We propose a novel tilted long period fiber grating (TLPFG) design, inscribed using a line-by-line i...
In this paper, a Fabry-Perot interferometer structure (FPIS) cascaded with a regenerated grating (RG...
We present a strain and temperature polymer fiber sensor with exceptional optical properties based o...
We report a high-temperature fiber-optic sensor based on measuring the spectral fringes of a Fabry–P...
Type I fiber Bragg gratings (FBG) written through the coating of various off-the-shelf silica fibers...
As a novel sensing element, fiber Bragg grating (FBG) is sensitive to both temperature and strain. B...