Moatless bend-optimized multimode fiber
US-2015378092-A1 · Dec 31, 2015 · US
US2016377801A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016377801-A1 |
| Application number | US-201615175403-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 7, 2016 |
| Priority date | Jun 23, 2015 |
| Publication date | Dec 29, 2016 |
| Grant date | — |
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A multimode coupling fiber for optical data links features low coupling loss to silicon photonics lasers, VCSELs, single mode transmission fibers, multimode transmission fibers, and high speed receivers. The coupling fiber includes a core, an optional inner cladding region, a depressed index cladding region, and an outer cladding region. The relative refractive index profile of the coupling fiber includes a core region with a profile and a depressed index cladding region that facilitates low bending loss and high bandwidth. The mode field diameter of the coupling fiber is well-matched to standard single mode transmission fibers and the etendue of the coupling fiber is high enough to couple efficiently to multimode transmission fibers.
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What is claimed is: 1 . A multimode optical fiber comprising: a core region, said core region having an outer radius r 1 in the range from 10 μm to 20 μm, and a relative refractive index profile defined by the relationship: Δ 1 ( r ) = Δ 1 max [ 1 - [ r r 1 ] α ] and a cladding adjacent said core region, said cladding including (i) a depressed index cladding region having an inner radius in the range from 11 μm to 20 μm, an outer radius r 3 in the range from 14 μm to 24 μm, and a relative refractive index Δ 3 in the range from −0.8% to −0.1%, and (ii) an outer cladding region adjacent said depressed index cladding region having a relative refractive index Δ 4 in the range from −0.2% to 0.2% and an outer radius r 4 less than 60 μm; wherein said core region and said cladding form a waveguide that supports a fundamental mode and at least one higher order mode at 1310 nm and said optical fiber has an effective modal bandwidth at 1310 nm of at least 3 GHz-km. 2 . The multimode optical fiber of claim 1 , wherein said outer radius r 1 is in the range from 13 μm to 17 μm. 3 . The multimode optical fiber of claim 1 , wherein said depressed index cladding region has a thickness in the range from 3 μm to 6 μm. 4 . The multimode optical fiber of claim 1 , wherein said relative refractive index Δ 3 in the range from −0.6% to −0.3%. 5 . The multimode optical fiber of claim 1 , wherein said effective modal bandwidth at 1310 nm is at least 8 GHz-km. 6 . The multimode optical fiber of claim 1 , wherein said fiber has a mode field diameter for the LP01 mode at 1310 nm between 8.8 μm and 9.6 μm. 7 . The multimode optical fiber of claim 1 , wherein said outer cladding region has an outer radius r 4 in the range from 35 μm to 45 μm. 8 . The multimode optical fiber of claim 1 , further comprising a coating adjacent said cladding, said coating having an outer radius r 5 less than 80 μm. 9 . A multimode optical fiber comprising: a core region, said core region having an outer radius r 1 in the range from 10 μm to 20 μm, and a relative refractive index profile defined by the relationship: Δ 1 ( r ) = Δ 1 max [ 1 - [ r r 1 ] α ] and a cladding adjacent said core region, said cladding including (i) a depressed index cladding region having an inner radius in the range from 11 μm to 20 μm, an outer radius r 3 in the range from 14 μm to 24 μm, and a relative refractive index Δ 3 in the range from −0.8% to −0.1%, and (ii) an outer cladding region adjacent said depressed index cladding region having a relative refractive index Δ 4 in the range from −0.2% to 0.2% and an outer radius r 4 less than 60 μm; wherein said core region and said cladding form a waveguide that supports a fundamental mode and at least one higher order mode at 1550 nm and said optical fiber has an effective modal bandwidth at 1550 nm of at least 3 GHz-km. 10 . The multimode optical fiber of claim 9 , wherein said outer radius r 1 is in the range from 13 μm to 17 μm. 11 . The multimode optical fiber of claim 9 , wherein said depressed index cladding region has a thickness in the range from 3 μm to 6 μm. 12 . The multimode optical fiber of claim 9 , wherein said relative refractive index Δ 3 is in the range from −0.6% to −0.3%. 13 . The multimode optical fiber of claim 9 , wherein said effective modal bandwidth at 1550 nm is at least 8 GHz-km. 14 . The multimode optical fiber of claim 9 , wherein said fiber has a mode field diameter for the LP01 mode at 1550 nm between 9.8 μm and 10.6 μm. 15 . The multimode optical fiber of claim 9 , wherein said outer cladding region has an outer radius r 4 in the range from 35 μm to 45 μm. 16 . The multimode optical fiber of claim 9 , further comprising a coating adjacent said cladding, said coating having an outer radius r 5 less than 80 μm. 17 . An optical data link comprising: a transmitter, said transmitter including a light source, said light source providing light; and a multimode optical fiber operably connected to said transmitter, said multimode optical fiber receiving said light from said light source, said multimode optical fiber comprising: a core region, said core region having an outer radius r 1 in the range from 10 μm to 20 μm, and a relative refractive index profile defined by the relationship: Δ 1 ( r ) = Δ 1 max [ 1 - [ r r 1 ] α ] and a cladding adjacent said core region, said cladding including (i) a depressed index cladding region having an inner radius in the range from 11 μm to 20 μm, an outer radius r 3 in the range from 14 μm to 24 μm, and a relative refractive index Δ 3 in the range from −0.8% to −0.1%, and (ii) an outer cladding region adjacent
arranged - - + · CPC title
Coupling light guides with opto-electronic elements · CPC title
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Multimode transmission · CPC title
characterised by the core effective area or mode field radius · CPC title
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