Long-period grating device and tunable gain flattening filter having same
US-2016223744-A1 · Aug 4, 2016 · US
US9651737B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9651737-B2 |
| Application number | US-201514864054-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 24, 2015 |
| Priority date | Sep 24, 2015 |
| Publication date | May 16, 2017 |
| Grant date | May 16, 2017 |
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An optical filter device may include an optical fiber having a core and a cladding surrounding the core, the optical fiber having a tapered portion. The optical filter device may include an index selectable material surrounding the tapered portion and having an index of refraction being selectable based upon a physical characteristic. The optical filter device may include a device configured to change the index selectable material to select the index of refraction to selectively filter out a mode within the optical fiber.
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That which is claimed is: 1. An optical filter device comprising: an optical fiber comprising a core and a cladding surrounding said core, said optical fiber having a tapered portion with a tapered core and a tapered cladding surrounding said tapered core, the tapered portion having a tapering rate in a range between 15 μm diameter/(mm fiber) and 1 μm diameter/mm fiber; an index selectable material surrounding said tapered-portion and having an index of refraction being selectable based upon a physical characteristic thereof; and a device configured to change said index selectable material to select the index of refraction to selectively filter out at least one mode within said optical fiber. 2. The optical filter device of claim 1 , wherein said index selectable material comprises an index matching fluid. 3. The optical filter device of claim 1 , wherein the index of refraction is selectable based upon a temperature thereof; and wherein said device comprises a heating device configured to heat said index selectable material. 4. The optical filter device of claim 3 , wherein said index selectable material strips out the at least one mode at a threshold temperature and passes the at least one mode at a temperature different than the threshold temperature. 5. The optical filter device of claim 1 , wherein said cladding is continuous. 6. The optical filter device of claim 1 , wherein the at least one mode comprises at least one mode propagating in the tapered core and extending to an outer edge in said tapered cladding of the tapered portion. 7. The optical filter device of claim 1 , wherein said tapered cladding of the tapered portion is axially symmetric with said core. 8. The optical filter device of claim 1 , further comprising a container carrying said index selectable material and positioned adjacent said device. 9. The optical filter device of claim 3 , wherein said heating device comprises an electric heating device. 10. The optical filter device of claim 1 , wherein the tapered portion of said optical fiber has a diameter in the range of 40-55 micrometers. 11. An optical system comprising: an optical splitter configured to receive a multi-mode optical signal; and a plurality of optical filter devices coupled downstream from said optical splitter, each optical filter device comprising an optical fiber comprising a core and a cladding surrounding said core, said optical fiber having a tapered portion with a tapered core and a tapered cladding surrounding said tapered core, the tapered portion having a tapering rate in a range between 15 μm diameter/(mm fiber) and 1 μm diameter/mm fiber, an index selectable material surrounding said tapered portion and having an index of refraction being selectable based upon a temperature thereof, and a heating device configured to heat said index selectable material to select the index of refraction to selectively filter out at least one mode within said optical fiber. 12. The optical system of claim 11 , wherein said index selectable material comprises an index matching fluid. 13. The optical system of claim 11 , wherein said index selectable material strips out the at least one mode at a threshold temperature and passes the at least one mode at a temperature different than the threshold temperature. 14. The optical system of claim 11 , wherein said cladding is continuous. 15. The optical system of claim 11 , wherein the at least one mode comprises at least one mode propagating in the tapered core and extending to an outer edge in said tapered cladding of the tapered portion. 16. The optical system of claim 11 , wherein said tapered cladding of the tapered portion is axially symmetric with said core. 17. A method for operating an optical filter device comprising an optical fiber comprising a core and a cladding surrounding the core, the optical fiber having a tapered portion with a tapered core and a tapered cladding surrounding said tapered core, the tapered portion having a tapering rate in a range between 15 μm diameter/(mm fiber) and 1 μm diameter/(mm fiber), and an index selectable material surrounding the tapered portion and having an index of refraction being selectable based upon a physical characteristic thereof, the method comprising: changing the physical characteristic of the index selectable material to select the index of refraction to selectively filter out at least one mode within the optical fiber. 18. The method of claim 17 , wherein the index selectable material comprises an index matching fluid. 19. The method of claim 17 , wherein the index of refraction is selectable based upon a temperature thereof; and wherein changing the physical characteristic of the index selectable material comprises heating the index selectable material. 20. The method of claim 19 , further comprising stripping with the index selectable material out the at least one mode at a threshold temperature and passing the at least one mode at a temperature different than the threshold temperature. 21. The method of claim 17 , wherein the cladding is continuous. 22. The method of claim 17 , further comprising propagating the at least one mode in the tapered core and extending to an outer edge in the tapered cladding of the tapered portion. 23. The method of claim 17 , wherein the tapered cladding of the tapered portion is axially symmetric with the core.
Mode converters · CPC title
by controlling the evanescent coupling of light from a fibre into an active, e.g. electro-optic, overlay · CPC title
forming multipart couplers without wavelength selective elements, e.g. "T" couplers, star couplers · CPC title
based on thermo-optic effects (G02F1/132 takes precedence) · CPC title
comprising optical elements other than gratings, e.g. filters (comprising gratings G02B6/02057) · CPC title
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