Claims
- 1. An optical fiber interferometer for measuring environmental perturbations comprising:
- a source of coherent light;
- a length of optical fiber having two flat ends perpendicular to the axis of said fiber at said ends, said fiber being operatively connected to transmit the light received through one of said ends;
- detecting means operatively connected to receive the transmitted light from the other of said ends for detecting the intensity of the received light and for producing a signal indicative thereof;
- sensing means operatively connected to said fiber for modulating the optical path length of the light in said fiber in response to an environmental perturbation;
- feedback means operatively connected to said detecting means for receiving the signal therefrom and producing a current at said sensing means for adjusting the optical path length in response to the signal; and
- display means operatively connected to said feedback means for measuring the current and displaying a value indicative of the corresponding perturbation.
- 2. An optical fiber interferometer according to claim 1 wherein said fiber is single mode.
- 3. An optical fiber interferometer according to claim 1 wherein said flat ends are partially reflective.
- 4. An optical fiber interferometer according to claim 1 wherein said sensing means comprises a magnetostrictive element responsive to changes in ambient magnetic field strength.
- 5. An optical fiber interferometer according to claim 4 wherein said feedback means comprises:
- electronic means operatively connected to receive and amplify the signal; and
- a coil about said element operatively connected to receive the amplified signal and create a magnetic field adjacent to said magnetostrictive element.
- 6. An optical fiber interferometer according to claim 1 wherein said sensing means comprises a piezoelectric element responsive to changes in ambient electric field strength.
- 7. An optical fiber interferometer according to claim 6 wherein said feedback means comprises:
- electronic means operatively connected for receiving the signal from said detecting means; and
- circuitry operatively connected to said electronic means for passing a current through said piezoelectric element.
- 8. An optical fiber interferometer for measuring change in magnetic field, comprising:
- a source of coherent light;
- a length of single mode optical fiber having two partially reflective flat ends, said fiber being optically connected to transmit the light received through one of said ends;
- detecting means optically connected to receive the transmitted light from the other of said fiber ends for detecting the intensity of the received light and producing a signal indicative thereof;
- a magnetostrictive element operatively connected to said fiber for changing the length of said fiber in response to a magnetic field, thereby altering the optical path length of said fiber and changing the interference condition and therefore the intensity of the light received by said detecting means;
- feedback means operatively connected to said detecting means for receiving the signal therefrom and producing a current to said element for adjusting the length of said fiber in response to the signal; and
- display means operatively connected to said feedback means for receiving a portion of the current therefrom and displaying a value indicative of the corresponding magnetic field.
- 9. An optical fiber interferometer according to claim 8 wherein said feedback means comprises:
- electronic means operatively connected to receive and amplify the signal; and
- a coil about said element operatively connected to receive the amplified signal and create a magnetic field adjacent to said magnetostrictive element.
- 10. An optical fiber interferometer for measuring change in electric field, comprising:
- a source of coherent light;
- a length of single mode optical fiber having two partially reflective flat ends, said fiber being optically connected to transmit the light received through one of said ends;
- detecting means optically connected to receive the transmitted light from the other of said fiber ends for detecting the intensity of the received light and producing a signal indicative thereof;
- a piezoelectric element operatively connected to said fiber for changing the length of said fiber in response to an electric field, thereby altering the optical path length of said fiber and changing the interference condition and therefore the intensity of the light received by said detecting means;
- feedback means operatively connected to said detecting means for receiving the signal therefrom and producing a current to said element for adjusting the length of said fiber in response to the signal; and
- display means operatively connected to said feedback means for receiving a portion of the current therefrom and displaying a value indicative of the corresponding electric field.
- 11. An optical fiber interferometer according to claim 10 wherein said feedback means comprises:
- electronic means operatively connected for receiving the signal from said detecting means; and
- circuitry operatively connected to said electronic means for passing a current through said piezoelectric element.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (6)