Aggarwal, 2018 - Google Patents
Optical waveguide manufacturingAggarwal, 2018
- Document ID
- 6432058193451584198
- Author
- Aggarwal I
- Publication year
- Publication venue
- Fiber Optics
External Links
Snippet
This chapter discusses both quality control and diagnostic measurements for multimode fibers. It also discusses the quality control measurements of attenuation, bandwidth, and numerical aperture. The chapter describes how optical waveguide fibers are produced. The …
- 230000003287 optical effect 0 title abstract description 51
Classifications
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
- G02B6/00—Light guides
- G02B6/24—Coupling light guides
- G02B6/255—Splicing of light guides, e.g. by fusion or bonding
- G02B6/2551—Splicing of light guides, e.g. by fusion or bonding using thermal methods, e.g. fusion welding by arc discharge, laser beam, plasma torch
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
- G02B6/00—Light guides
- G02B6/24—Coupling light guides
- G02B6/26—Optical coupling means
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
- G02B6/00—Light guides
- G02B6/02—Optical fibre with cladding with or without a coating
- G02B6/02295—Microstructured optical fibre
- G02B6/02314—Plurality of longitudinal structures extending along optical fibre axis, e.g. holes
-
- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03B—MANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
- C03B37/00—Manufacture or treatment of flakes, fibres, or filaments from softened glass, minerals, or slags
- C03B37/01—Manufacture of glass fibres or filaments
- C03B37/02—Manufacture of glass fibres or filaments by drawing or extruding, e.g. direct drawing of molten glass from nozzles; Cooling fins therefor
- C03B37/025—Manufacture of glass fibres or filaments by drawing or extruding, e.g. direct drawing of molten glass from nozzles; Cooling fins therefor from reheated softened tubes, rods, fibres or filaments, e.g. drawing fibres from preforms
-
- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03B—MANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
- C03B37/00—Manufacture or treatment of flakes, fibres, or filaments from softened glass, minerals, or slags
- C03B37/01—Manufacture of glass fibres or filaments
- C03B37/012—Manufacture of preforms for drawing fibres or filaments
- C03B37/014—Manufacture of preforms for drawing fibres or filaments made entirely or partially by chemical means, e.g. vapour phase deposition of bulk porous glass either by outside vapour deposition [OVD], or by outside vapour phase oxidation [OVPO] or by vapour axial deposition [VAD]
-
- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03B—MANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
- C03B37/00—Manufacture or treatment of flakes, fibres, or filaments from softened glass, minerals, or slags
- C03B37/01—Manufacture of glass fibres or filaments
- C03B37/02—Manufacture of glass fibres or filaments by drawing or extruding, e.g. direct drawing of molten glass from nozzles; Cooling fins therefor
- C03B37/022—Manufacture of glass fibres or filaments by drawing or extruding, e.g. direct drawing of molten glass from nozzles; Cooling fins therefor from molten glass in which the resultant product consists of different sorts of glass or is characterised by shape, e.g. hollow fibres, undulated fibres, fibres presenting a rough surface
- C03B37/023—Fibres composed of different sorts of glass, e.g. glass optical fibres, made by the double crucible technique
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Sanghera et al. | Infrared fiber optics | |
Dianov et al. | Germania-based core optical fibers | |
Lin | Optoelectronic technology and lightwave communications systems | |
JP3301602B2 (en) | Optical fiber having low loss at 1385 nm and method for producing the same | |
Lancry et al. | Fictive temperature in silica-based glasses and its application to optical fiber manufacturing | |
JPS5831561B2 (en) | optical waveguide | |
US4286979A (en) | Fabrication of optical fibers using differential mode-group delay measurement | |
KR20060033861A (en) | Optical fiber having reduced viscosity mismatch | |
Gupta | Optoelectronic Devices and Systems | |
WO2001035082A1 (en) | Method to determine the identity of a material in an object | |
Bachmann et al. | Dispersion-flattened single-mode fibers prepared with PCVD: performance, limitations, design optimization | |
Aggarwal | Optical waveguide manufacturing | |
Lyytikäinen | Control of complex structural geometry in optical fibre drawing | |
US4968339A (en) | Method of fluorine doped modified chemical vapor deposition | |
Dianov et al. | Lasers and fiber optics | |
Shibata et al. | Nondestructive structure measurement of optical-fiber preforms with photoelastic effect | |
Nagel | Review of the depressed cladding single-mode fiber design and performance for the SL undersea system application | |
Niizeki | Recent progress in glass fibers for optical communication | |
Chynoweth | The fiber lightguide | |
Nelson et al. | The fabrication and performance of long lengths of silica core fiber | |
Pal | Optical communication fiber waveguide fabrication: A review | |
JP2024502564A (en) | Microstructured optical fiber and its preform | |
Jablonowski et al. | Optical fiber manufacturing techniques | |
Presby | Axial refractive index depression in preforms and fibers | |
Nagel | Silica-Based Glass Optical Fiber Properties And Fabrication Methods |