Fiber optic vibration sensor
A fiber optic vibration sensor is disclosed. This invention has an optical fiber of a tubular configuration that includes a cladding layer and a core, having a first end, a second end and a sensing region; a source of laser for emitting laser onto the first end of the optical fiber; an optical diode connected to the second end of the optical fiber; and an optical wave analyzer connected to the optical diode; wherein the sensing region includes at least a polished region formed by polishing a side of the optical fiber and a grating disposed in the polishing region.
1. A fiber optic vibration sensor, comprising:
an optical fiber of a tubular configuration comprised of a cladding layer and a core, having a first end, a second end and a vibration sensitive region, the vibration sensitive region being configured to cause a variation of transmitted or reflected light rays in said optical fiber according to a vibration of said optical fiber;
a source of laser for emitting laser light rays onto said first end of said optical fiber;
an optical diode connected to said second end of said optical fiber; and
an optical wave analyzer connected to said optical diode and adapted to sense variations in light rays in said optical fiber caused by said vibration sensitive region;
wherein said vibration sensitive region comprises at least a polished region formed by polishing a side of said optical fiber and a grating formed in said polishing region.
2. The fiber optic vibration sensor of claim 1 , wherein said polished region is being polished to expose said core.
3. The fiber optic vibration sensor of claim 1 , wherein said grating is formed by the steps of:
coating a photoresist layer over said polished region;
patterning a grating on said photoresist layer by development; and
forming said grating by etching;
wherein said grating is a quantity of parallel rectangle-shaped grooves formed on said photoresist layer, said rectangle-shaped grooved being longitudinally perpendicular to the core axis of said optical fiber.
4. The fiber optic vibration sensor of claim 1 , wherein the length of a period of said grating is between 8 and 15 μm.
5. The fiber optic vibration sensor of claim 1 , wherein said optical wave analyzer is a storage-type oscilloscope.
6. The fiber optic vibration sensor of claim 1 , wherein at least one bottom of said grating is part of said core.
7. The fiber optic vibration sensor of claim 2 , wherein the length of a period of said grating is uniform.
8. The fiber optic vibration sensor of claim 1 , wherein the depth of said grating is uniform.
9. The fiber optic vibration sensor of claim 1 , wherein said grating comprises a quantity of parallel rectangular grooves.
10. The fiber optic vibration sensor of claim 9 , wherein the rectangular grooves are longitudinally perpendicular to the core axis of said optical fiber.