Single-mode optical fiber with ultralow attenuation and large effective area

An effective area, single-mode fiber technology, used in multi-layer core/clad fibers, clad fibers, light guides, etc., can solve the problems of reduced fiber attenuation performance, high core viscosity, low viscosity, etc. The effect of improving, increasing the effective area and reducing the production cost

Active Publication Date: 2015-03-25
SHANTOU HIGH TECH ZONE AOXING OPTICAL COMM EQUIP
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

However, because of the conventional fluorine outer cladding design, the core layer is still relatively viscous than the fluorine outer cladding, and defects are still prone to occur during the wire drawing process, which limits the further reduction of fiber attenuation performance. In addition, the fluorine outer cladding structure is adopted. Due to the fluorine The

Method used

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  • Single-mode optical fiber with ultralow attenuation and large effective area
  • Single-mode optical fiber with ultralow attenuation and large effective area
  • Single-mode optical fiber with ultralow attenuation and large effective area

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Embodiment Construction

[0024] The present invention is described in detail below in conjunction with the examples.

[0025] Including a core layer and a cladding layer, the core layer includes a sunken core layer and an outer core layer from the center to the outside, and the cladding layer includes an inner cladding layer, a sunken inner cladding layer, an auxiliary outer cladding layer and an outer cladding layer from the inside to the outside, wherein , the radius of the sunken core layer is R 1 , the relative refractive index difference is , the outer core radius is R 2 , the relative refractive index difference is , the inner cladding radius is R 3 , the relative refractive index difference is , the radius of the depressed inner cladding is R 4 , the relative refractive index difference is , the auxiliary inner cladding radius is R 5 , the relative refractive index difference is , the outer cladding layer is a pure silica glass layer, and the outer cladding radius R 6 is 62.5 μm. ...

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Abstract

The invention relates to a single-mode optical fiber with ultralow attenuation and a large effective area. The single-mode optical fiber comprises a core layer and a wrapping layer and is characterized in that the core layer comprises a sinking core layer body and an outer core layer body from center to outside; the wrapping layer comprises an inner wrapping layer body, a sinking inner wrapping layer body, an auxiliary outer wrapping layer body and an outer wrapping layer body from inside to outside; the radius R1 of the sinking core layer body ranges from 1.5 Mum to 4 Mum, and the relative refractivity ranges from minus 0.10% to 0.02%; the radius R2 of the outer core layer body ranges from 4.5 Mum to 6.5 Mum, and the relative refractivity ranges from minus 0.08% to 0.10%; the radius R3 of the inner wrapping layer body ranges from 9 Mum to 15 Mum, and the relative refractivity ranges from minus 0.25% to minus 0.1%; the radius R4 of the sinking inner wrapping layer body ranges from 12 Mum to 20 Mum, and the relative refractivity ranges from minus 0.6% to minus 0.25%; the radius R5 of the auxiliary inner wrapping layer body ranges from 35 Mum to 50 Mum, and the relative refractivity ranges from minus 0.45% to minus 0.15%; the outer wrapping layer body is a pure silicon dioxide glass layer. The single-mode optical fiber has the large effective area and good bending loss and chromatic dispersion performance, the cabling cutoff wavelength is smaller than 1530 nm, and the production cost is low.

Description

technical field [0001] The invention relates to the field of optical fiber transmission, in particular to a single-mode optical fiber with ultra-low attenuation and large effective area, which is used in a long-distance, large-capacity, high-speed communication transmission system. Background technique [0002] With the emergence of coherent transmission technology, in the field of optical fiber transmission, some important indicators that originally limited long-distance, large-capacity and high-speed transmission have no longer become restrictions. In future transmission systems, dispersion (CD) and polarization mode dispersion ( PMD) indicators will be further relaxed. However, the attenuation and effective area of ​​optical fibers are still important issues that limit the development of optical communication technology. [0003] Especially in future 400G or higher transmission systems, the reduction of attenuation will greatly reduce the construction and maintenance cos...

Claims

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Application Information

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IPC IPC(8): G02B6/036
CPCG02B6/036G02B6/03694
Inventor 张磊龙胜亚吴俊朱继红张睿周红燕王瑞春
Owner SHANTOU HIGH TECH ZONE AOXING OPTICAL COMM EQUIP
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