Claims
- 1. An electromagnetic field frequency filter comprising:
an input waveguide which carries a signal having at least one frequency including at least one desired frequency; an output waveguide; and a resonator-system coupled to said input and output waveguides by at least one directional coupler, said resonator-system transfers said at least one desired frequency to said output waveguide, said resonator-system including at least two resonator sub-elements each supporting at least one mode at or near said desired frequency.
- 2. The filter of claim 1, wherein at least one of said resonator sub-element supports only one mode.
- 3. The filter of claim 1, wherein at least two of said modes have substantially the same energy dissipation rates.
- 4. The filter of claim 1, wherein each said resonator sub-element comprises at least one waveguide section, each waveguide section supporting at least one resonator.
- 5. The filter of claim 1, wherein each said resonator sub-element comprises at least two resonators each supporting only one mode.
- 6. The filter of claim 5, wherein said at least two resonators in at least one resonator sub-element support at least one resonator sub-element mode including a linear combination of the resonant modes of said resonator sub-element, said resonator-system being specifically configured such that said resonator sub-element mode has substantially the same frequency profile as the sub-element mode of at least one other resonator sub-element.
- 7. The filter of claim 1, wherein said resonator-system is specifically configured such that reflection of the desired frequency in the input port in cancelled.
- 8. The filter of claim 1, wherein each of said input and output waveguides is physically connected to at least one sub-element of said resonator-system by a waveguide.
- 9. The filter of claim 1, wherein said resonator-system comprises at least one periodic dielectric structure.
- 10. The filter of claim 9, wherein said periodic dielectric structure comprises at least one phase shift defining at least one resonator.
- 11. An electromagnetic field frequency filter comprising:
an input waveguide which carries a signal having at least one frequency including at least one desired frequency; an output waveguide; and a resonator-system coupled to said input and output waveguides by at least one directional coupler, said resonator-system transfers said at least one desired frequency to said output waveguide, said resonator-system being comprised of at least two resonator sub-elements each supporting at least one mode at or near said desired frequency, said resonator sub-elements each comprising at least one periodic dielectric structure.
- 12. The filter of claim 11, wherein each of said input and output waveguides is physically connected to at least one sub-element of said resonator-system by a waveguide.
- 13. The filter of claim 11, wherein each said resonator sub-element comprises at least one waveguide section, each said waveguide section supporting at least one resonator.
- 14. The filter of claim 13, wherein each said resonator sub-element comprises at least two resonators, each supporting only one mode.
- 15. An electromagnetic field frequency filter comprising:
an input waveguide which carries a signal having at least one frequency including at least one desired frequency; an output waveguide; and a resonator-system coupled to said input and output waveguides by at least one directional coupler, said resonator-system being operable for the adjustable transfer of said at least one desired frequency to said output waveguide in response to a variation of the internal decaying rate or resonance frequency of at least one resonator of said resonator-system, said resonator-system including at least two resonator sub-elements each supporting at least one mode at or near said desired frequency when said transfer occurs substantially.
- 16. The filter of claim 15, wherein said resonator-system comprises at least one periodic dielectric structure with at least one phase shift defining at least one resonator.
- 17. The filter of claim 15, wherein said internal decaying rate or resonance frequency of said at least one resonator is varied by changing the absorption characteristics or index of refraction of said resonator-system.
- 18. The filter of claim 15, wherein said internal decaying rate or resonance frequency of said at least one resonator is varied by an electrical, thermal, optical, or mechanical means.
- 19. The filter of claim 15, wherein said input waveguide has an input port and an output port, said output waveguide has a forward port and a backward port, and said internal decaying rate or resonance frequency of said at least one resonator is varied to provide selective switching of said desired frequency into either the output port or the forward port.
- 20. The filter of claim 15, wherein said input waveguide has an input port and an output port, said output waveguide has a forward port and a backward port, and said internal decaying rate or resonance frequency of said at least one resonator is varied to provide selective splitting of said desired frequency into at least two of said four ports.
- 21. The filter of claim 15, wherein said at least two sub-element modes have substantially the same energy dissipation rates when said transfer occurs substantially.
- 22. An electromagnetic field frequency filter comprising:
an input waveguide which carries a signal having at least one frequency including at least one desired frequency; an output waveguide; and a resonator-system coupled to said input and output waveguides by at least one directional coupler, said resonator-system being operable for the adjustable transfer of said at least one desired frequency to said output waveguide in response to a variation of the index of refraction or the absorption in the vicinity of at least one resonator of said resonator-system.
- 23. The filter of claim 22, wherein said resonator-system is specifically configured such that reflection of the desired frequency in the input port in cancelled.
- 24. The filter of claim 22, wherein said resonator-system comprises at least one periodic dielectric structure with at least one phase shift defining at least one resonator.
- 25. The filter of claim 22, wherein the resonator-system comprises at least two resonator sub-elements, each supporting at least one mode at or near said desired frequency when said transfer occurs substantially.
- 26. The filter of claim 25, wherein each said resonator sub-element comprises at least two resonators, each supporting only one mode.
- 27. The filter of claim 25, wherein each said input and output waveguide is physically connected to at least one sub-element of said resonator-system by a waveguide.
PRIORITY INFORMATION
[0001] This application is a continuation-in-part application of Ser. No. 09/619,926 filed Jul. 20, 2000, which is a continuation of Ser. No. 09/080,037 filed May 15, 1998, now U.S. Pat. No. 6,101,300, which is a continuation-in-part of Ser. No. 08/968,314 filed Nov. 12, 1997, now U.S. Pat. No. 6,130,969, which is a continuation-in-part of Ser. No. 08/871,747 filed Jun. 9, 1997, now abandoned.
Continuations (1)
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Number |
Date |
Country |
Parent |
09080037 |
May 1998 |
US |
Child |
09619926 |
Jul 2000 |
US |
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
09619926 |
Jul 2000 |
US |
Child |
10096616 |
Mar 2002 |
US |
Parent |
08968314 |
Nov 1997 |
US |
Child |
09080037 |
May 1998 |
US |
Parent |
08871747 |
Jun 1997 |
US |
Child |
08968314 |
Nov 1997 |
US |