Claims
- 1. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate, the elements further comprising a nonvolatile material formed from a sorbed precursor substance selected from the group consisting of organometallics, hydrocarbon compounds, and tungsten hexafluoride.
- 2. The photonic crystal device of claim 1 wherein the spaced elements are selected from the group consisting of upward-extending pillars, laterally-extending pillars, and bits.
- 3. The photonic crystal device of claim 1 wherein a majority of the spaced elements have a first index of refraction and at least one of the spaced elements has a second index of refraction different from the first index and forms an impurity element.
- 4. The photonic crystal device of claim 3 wherein the photonic crystal further includes a spacer material between the plurality of spaced elements, with the spacer material having a third index of refraction different from the first index.
- 5. The photonic crystal device of claim 1 wherein elements are spaced by a sub-multiple of a wavelength of an electromagnetic wave incident on the photonic crystal to provide an interaction with the electromagnetic wave.
- 6. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate, the elements comprising a nonvolatile material formed from a sorbed precursor substance in the form of a hydrocarbon compound selected from the group consisting of dimethyl-gold-trifluoro-acetylacetonate and diethyl-gold-acetylacetonate.
- 7. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate; and
- (c) at least one electromagnetic waveguide formed above the surface of the substrate and positioned adjacent to the photonic crystal for communication of an electromagnetic wave therewith.
- 8. The photonic crystal device of claim 7 wherein the elements comprise a nonvolatile material selected from the group consisting of organometallics, hydrocarbon compounds, and tungsten hexafluoride.
- 9. The photonic crystal device of claim 7 wherein the elements are selected from the group consisting of upward-extending pillars, laterally-extending pillars, and bits.
- 10. The photonic crystal device of claim 7 further including a spacer material between the plurality of spaced elements, the spacer material having an index of refraction different from the index of refraction of the spaced elements.
- 11. The photonic crystal device of claim 7 wherein the elements are spaced by a sub-multiple of a wavelength of the electromagnetic wave to provide an interaction with the electromagnetic wave.
- 12. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate and further comprising a nonvolatile material formed from a sorbed precursor substance selected from the group consisting of organometallics, hydrocarbon compounds, and tungsten hexafluoride, with a majority of the spaced elements having a first index of refraction and at least one of the elements being in the form of an impurity element with a second index of refraction different from the first index.
- 13. The photonic crystal device of claim 12 wherein the sorbed precursor substance is a hydrocarbon compound selected from the group consisting of dimethyl-gold-trifluoro-acetylacetonate and diethyl-gold-acetylacetonate.
- 14. The photonic crystal device of claim 12 wherein the spaced elements are selected from the group consisting of upward-extending pillars, laterally-extending pillars, and bits.
- 15. The photonic crystal device of claim 12 wherein the elements have a periodicity that is a sub-multiple of a wavelength of an electromagnetic wave incident on the photonic crystal to provide an interaction with the electromagnetic wave.
- 16. The photonic crystal device of claim 15 wherein the spaced elements form a periodic array structure, and each impurity element provides a local disturbance in the periodic array structure to generate a defect mode, thereby forming an electromagnetic filter.
- 17. The photonic crystal device of claim 15 wherein a pair of photonic crystals are spaced about a cavity region to form an electromagnetic resonator.
- 18. The photonic crystal device of claim 15 wherein a number and placement of the impurity elements are selected to form an electromagnetic antenna.
- 19. The photonic crystal device of claim 15 wherein the photonic crystal device includes an active region to form an electromagnetic source.
- 20. The photonic crystal device of claim 15 wherein the interaction with the electromagnetic wave alters a direction of propagation of the electromagnetic wave.
- 21. The photonic crystal device of claim 12 wherein the photonic crystal further includes a spacer material between the plurality of spaced elements, with the spacer material having a composition different from both the substrate and any of the spaced elements.
- 22. The photonic crystal device of claim 12 further including a spacer material provided between the spaced elements, the spacer material having a third index of refraction different from the first index of refraction.
- 23. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate, with a majority of the spaced elements having a first index of refraction and at least one of the elements being in the form of an impurity element with a second index of refraction different from the first index; and
- (c) at least one electromagnetic waveguide formed above the surface of the substrate and positioned adjacent to the photonic crystal for communication of an electromagnetic wave therewith.
- 24. The photonic crystal device of claim 23 wherein the spaced elements comprise a nonvolatile material formed from a sorbed precursor substance selected from the group consisting of organometallics, hydrocarbon compounds, and tungsten hexafluoride.
- 25. The photonic crystal device of claim 23 wherein the spaced elements are selected from the group consisting of upward-extending pillars, laterally-extending pillars, and bits.
- 26. The photonic crystal device of claim 23 further including a spacer material provided between the spaced elements, the spacer material having a third index of refraction different from the first index of refraction.
- 27. The photonic crystal device of claim 23 wherein the elements are spaced by a sub-multiple of a wavelength of the electromagnetic wave to provide an interaction with the electromagnetic wave.
- 28. The photonic crystal device of claim 27 wherein the spaced elements form a periodic array structure, and each impurity element provides a local disturbance in the periodic array structure to generate a defect mode, thereby forming an electromagnetic filter.
- 29. The photonic crystal device of claim 27 wherein a pair of photonic crystals are spaced about a cavity region to form an electromagnetic resonator.
- 30. The photonic crystal device of claim 27 wherein a number and placement of the impurity elements are selected to form an electromagnetic antenna.
- 31. The photonic crystal device of claim 27 wherein the photonic crystal device includes an active region to form an electromagnetic source.
- 32. A photonic crystal device comprising:
- (a) a substrate; and
- (b) at least one photonic crystal formed on a surface of the substrate, each photonic crystal comprising a plurality of spaced elements having a composition different from the substrate, the elements further comprising a nonvolatile material formed from a sorbed precursor substance selected from the group consisting of inorganic, organic, and metalorganic materials, with a majority of the spaced elements having a first index of refraction, and at least one of the spaced elements having a second index of refraction different from the first index and forming an impurity element.
- 33. The photonic crystal device of claim 32 further including at least one electromagnetic waveguide formed above the surface of the substrate and positioned adjacent to the photonic crystal for communication of an electromagnetic wave therewith.
Priority Claims (1)
Number |
Date |
Country |
Kind |
19533148 |
Sep 1995 |
DEX |
|
Government Interests
This invention was made with Government support under Contract No. DE-AC04-94AL85000 awarded by the U.S. Department of Energy. The Government has certain rights in the invention.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
Country |
24 60 716 |
Dec 1976 |
DEX |