Tilted grating sensor
The present invention relates to a sensor using a tilted fiber grating to detect physical manifestations occurring in a medium. Such physical manifestations induce measurable changes in the optical property of the tilted fiber grating. The sensor comprises a sensing surface which is to be exposed to the medium, an optical pathway and a tilted grating in the optical pathway. The grating is responsive to electromagnetic radiation propagating in the optical pathway to generate a response conveying information on the physical manifestation.
1. A pressure sensor, comprising:
a) a flexible member, flexing in response to a pressure differential acting across said flexible member;
b) an optical pathway coupled to said flexible member, said optical pathway including a core and a cladding;
c) a tilted grating in said optical pathway, said flexible member imparting a bending deformation to said tilted grating when said flexible member flexes, said tilted grating being responsive to electromagnetic radiation propagating in the optical pathway to induce a propagation of cladding mode electromagnetic waves conveying bending information on the bending deformation imparted to said tilted grating; and
d) an output for generating a signal conveying pressure data, the signal derived from at least the information on the bending deformation imparted to said tilted grating.
2. Pressure sensor as defined in claim 1 , wherein said optical pathway includes an optical fiber.
3. Pressure sensor as defined in claim 1 , wherein a response of said tilted grating includes a core mode resonance component and a cladding mode resonance component.
4. Pressure sensor as defined in claim 1 , wherein said tilted grating is a tilted Bragg grating.