AbstractA new optical fiber micro-bend pressure sensor using fiber loop ringdown is studied in this paper. It consists of a pulse microchip laser, two 2×1optical fiber couplers, a photodetector, and a section of fused-silica single-mode fiber, which makes the sensing element with a micro-bend structure. Pressure can be measured by measuring the ringdown time of fiber loop due to the monotone relation of fiber transmission loss and the micro-bend of the single mode fiber. A test setup is constructured, then the ringdown time corresponding to different pressure, which is simulated by putting different heavy masses on the micro-bend panel. The experimental results show that the pressure has good linear relation with the reciprocal of the ringd...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
Based on the theory of multimode interference (MMI) and self-image formation, we developed a novel i...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
AbstractA new optical fiber micro-bend pressure sensor using fiber loop ringdown is studied in this ...
This paper reports the effect of microbending losses in single mode optical fiber for pressure sensi...
<p> A fiber-optic sensing scheme of measuring pressure is described here. The high reflective mirro...
Fiber loop ringdown (FLRD) utilizes an inexpensive telecommunications light source, a photodiode, an...
In this article we report a microwave photonics fiber loop ringdown (MWP-FLRD) interrogated fiber-op...
A micro-displacement sensing head based on two aligned cleaved fibers inserted into an optical fiber...
A micro-displacement sensing head based on two aligned cleaved fibers inserted into an optical fiber...
A new fiber fabry-perot pressure sensor is designed. It is made by photolithography, silicon wafer e...
Applications of Multimode Interference (MMI) effects in optical devices have been increased today du...
Applications of Multimode Interference (MMI) effects in optical devices have been increased today du...
A new fiber fabry-perot pressure sensor is designed. It is made by photolithography, silicon wafer e...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
Based on the theory of multimode interference (MMI) and self-image formation, we developed a novel i...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
AbstractA new optical fiber micro-bend pressure sensor using fiber loop ringdown is studied in this ...
This paper reports the effect of microbending losses in single mode optical fiber for pressure sensi...
<p> A fiber-optic sensing scheme of measuring pressure is described here. The high reflective mirro...
Fiber loop ringdown (FLRD) utilizes an inexpensive telecommunications light source, a photodiode, an...
In this article we report a microwave photonics fiber loop ringdown (MWP-FLRD) interrogated fiber-op...
A micro-displacement sensing head based on two aligned cleaved fibers inserted into an optical fiber...
A micro-displacement sensing head based on two aligned cleaved fibers inserted into an optical fiber...
A new fiber fabry-perot pressure sensor is designed. It is made by photolithography, silicon wafer e...
Applications of Multimode Interference (MMI) effects in optical devices have been increased today du...
Applications of Multimode Interference (MMI) effects in optical devices have been increased today du...
A new fiber fabry-perot pressure sensor is designed. It is made by photolithography, silicon wafer e...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...
Based on the theory of multimode interference (MMI) and self-image formation, we developed a novel i...
We present a continuous-wave fiber cavity ringdown (FCRD) pressure-sensing method based on frequency...