Claims
- 1. An integrated optical sensor comprising:an optical planar waveguide micro-resonator device; and means for measuring change in resonance position, in wavelength or frequency, of one or more modes of said micro-resonator device, wherein the difference in position, in wavelength or frequency, of two or more modes is measured.
- 2. The sensor of claim 1, wherein said means for measuring comprises a tunable laser source.
- 3. The sensor of claim 1, wherein said means for measuring comprises a white light source coupled with a spectrometer.
- 4. The sensor of claim 1, wherein said means for measuring comprises a light source and a detector that are hybridly or monolithically integrated with said micro-resonator device.
- 5. The sensor of claim 1 further comprising a chemically or biologically sensitive layer in close proximity to said micro-resonator device.
- 6. The sensor of claim 1 when integrated with more than one other sensor on the same chip.
- 7. An integrated optical sensor comprising:at least one optical waveguide micro-resonator device; and means for measuring change in resonance position, in wavelength or frequency, of one or more modes of said at least one micro-resonator devices a sensor, said means including a light source, wherein the change in position of wavelength is determined by tuning said micro-resonator device and keeping the frequency of said light sourced fixed.
- 8. The sensor of claim 6, wherein the difference in position, in wavelength or frequency, of two or more modes is measured.
- 9. The sensor of claim 6, wherein said means for measuring comprises a tunable laser source.
- 10. The sensor of claim 6, wherein said means for measuring comprises a white light source coupled with a spectrometer.
- 11. The sensor of claim 6, wherein said means for measuring comprises a light source and a detector that are hybridly or monolithically integrated with said micro-resonator device.
- 12. The sensor of claim 6 further comprising a chemically or biologically sensitive layer in close proximity to said micro-resonator device.
- 13. The sensor of claim 1 when integrated with more than one other sensor on the same chip.
PRIORITY INFORMATION
This application claims priority from provisional application Ser. No. 60/235,008 filed Sep. 25, 2000.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
WO 9937996 |
Jul 1999 |
WO |
WO 0017401 |
Mar 2000 |
WO |
Non-Patent Literature Citations (2)
Entry |
Stamm et al. “Integrated optical difference interferometer as immunosensor,” Elsevier Science S. A. 1996; p. 203-207. |
Foresi et al. “Photonic-bandgap microcavities in optical waveguides” Nature. Nov. 13, 1997; vol. 390. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/235008 |
Sep 2000 |
US |