Claims
- 1. A sensor comprising a silicon structure and an optical fiber having a first and second planer end face wherein the silicon structure is bonded onto the first planer end face of an optical fiber.
- 2. A sensor as claimed in claim 1, wherein the sensor is a silicon structure is anodically bonded onto the central portion of the first planer end face.
- 3. A sensor as claimed in claim 2, wherein the sensor wherein the second planer end face of the optical fiber is connected to a light source.
- 4. A sensor as claimed in claim 3, wherein the silicon structure is an ultra-thin silicon wafers of known thickness from about 0.1 μm to about 100 μm.
- 5. A sensor as claimed in claim 3, wherein the silicon structure is an ultra-thin silicon wafers of known thickness from about 0.5 μm to about 50 μm.
- 6. A sensor as claimed in claim 3, wherein the silicon structure is an ultra-thin silicon wafers of known thickness from about 1 μm to about 10 μm.
- 7. A sensor as claimed in claim 1, wherein the sensor is a silicon structure anodically bonded over a cavity etched into the central portion of the first planer end face.
- 8. A sensor as claimed in claim 7, wherein the cavity has a diameter from about 0.050 μm to about 2 μm.
- 9. A sensor as claimed in claim 7, wherein the cavity has a diameter from about 0.100 μm to about 1 μm.
- 10. A sensor as claimed in claim 7, wherein the cavity has a diameter from about 0.200 μm to about 1 μm.
- 11. A sensor as claimed in claim 10, wherein the sensor is a flat fiber end face that includes photolithographic patterning, wet etching of a cavity, and anodic bonding of a silicon diaphragm.
- 12. A sensor as claimed in claim 3 wherein the light source is a coherent light source.
- 13. A sensor as claimed in claim 12 wherein the light source has a wavelength from about 200 nm to about 2200 nm.
- 14. A sensor as claimed in claim 13 wherein the light source is light emitting diode.
- 15. A sensor as claimed in claim 1 wherein the fiber optic comprises a single mode fiber connected to the light source.
- 16. A sensor as claimed in claim 1 wherein the fiber optic comprises a multi-mode fiber connected to the light source.
- 17. A pressure sensing system comprising:
a silicon structure and an optical fiber having a first and second planer end face wherein the silicon structure is bonded onto the first planer end face of an optical fiber and wherein the silicon structure is responsive to pressure; an optical source for providing an optical source signal; and a measurement unit, responsive to the transduced optical signal, for providing a measurement unit signal containing information about the pressure.
- 18. The pressure sensing system of claim 17, wherein the silicon structure anodically bonded over a cavity etched into the central portion of the first planer end face.
- 19. The pressure sensing system of claim 18, wherein the sensing system is a coupler-based interferometer sensing system.
- 20. The pressure sensing system of claim 17, wherein the optical source and detection unit provides an optical signal on the fiber; wherein the sensing system further comprises a coupler that responds to the optical signal, for providing two optical signals, one optical signal of which has a reference phase; and wherein the measurement unit processes the coupled optical signal for providing the measurement unit signal containing information about the physical property such as the pressure.
- 21. A temperature sensing system comprising:
a silicon structure and an optical fiber having a first and second planer end face wherein the silicon structure is bonded onto the first planer end face of an optical fiber and wherein the silicon structure is responsive to pressure; an optical source for providing an optical source signal; and a measurement unit, responsive to the transduced optical signal, for providing a measurement unit signal containing information about the temperature; and wherein the optical source and detection unit provides an optical signal on the fiber; wherein the sensing system further comprises a coupler that responds to the optical signal, for providing two optical signals, one optical signal of which has a reference phase; and wherein the measurement unit processes the coupled optical signal for providing the measurement unit signal containing information about the physical property such as the pressure.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/274,513, filed Mar. 9, 2001, which application is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60274513 |
Mar 2001 |
US |