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Dive into the research topics where Robert G. Wiley is active.

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Featured researches published by Robert G. Wiley.


Proceedings of SPIE | 2011

High-power fused assemblies enabled by advances in fiber-processing technologies

Robert G. Wiley; Brett Clark

The power handling capabilities of fiber lasers are limited by the technologies available to fabricate and assemble the key optical system components. Previous tools for the assembly, tapering, and fusion of fiber laser elements have had drawbacks with regard to temperature range, alignment capability, assembly flexibility and surface contamination. To provide expanded capabilities for fiber laser assembly, a wide-area electrical plasma heat source was used in conjunction with an optimized image analysis method and a flexible alignment system, integrated according to mechatronic principles. High-resolution imaging and vision-based measurement provided feedback to adjust assembly, fusion, and tapering process parameters. The system was used to perform assembly steps including dissimilar-fiber splicing, tapering, bundling, capillary bundling, and fusion of fibers to bulk optic devices up to several mm in diameter. A wide range of fiber types and diameters were tested, including extremely large diameters and photonic crystal fibers. The assemblies were evaluated for conformation to optical and mechanical design criteria, such as taper geometry and splice loss. The completed assemblies met the performance targets and exhibited reduced surface contamination compared to assemblies prepared on previously existing equipment. The imaging system and image analysis algorithms provided in situ fiber geometry measurement data that agreed well with external measurement. The ability to adjust operating parameters dynamically based on imaging was shown to provide substantial performance benefits, particularly in the tapering of fibers and bundles. The integrated design approach was shown to provide sufficient flexibility to perform all required operations with a minimum of reconfiguration.


optical fiber communication conference | 2008

Large Area Isothermic Plasma for Large Diameter and Specialty Fiber Splicing

Robert G. Wiley; Brett Clark

A device is presented that creates a large area plasma for splicing optical fibers. The isothermic thermal properties of the plasma facilitate splicing fibers >1mm in diameter without sacrificing splicing performance of standard fibers.


Archive | 1991

Micromotor actuated adjustable focus lens

Robert G. Wiley


Archive | 2006

Method and apparatus for fusion splicing optical fibers

Robert G. Wiley; Donald Grasso; Steven A. Valle; Roberto Rivera; Jared Meitzler; Clyde J. Troutman


Archive | 2008

Multi-electrode system

Brett Clark; Robert G. Wiley; Jared Meitzler; Clyde J. Troutman


Archive | 2005

Method of cleaning and stripping an optical fiber using an electrical arc, and associated apparatus

Robert G. Wiley; Donald Grasso; Steven A. Valle; Sam Aderogba; Jared Meitzler; Clyde J. Troutman; Christopher Williams


Archive | 2010

Multi-electrode system with vibrating electrodes

Robert G. Wiley; Brett Clark; Jared Meitzler; Clyde J. Troutman


Archive | 2004

Rotary large diameter fiber cleaver

Robert G. Wiley; Brett Clark; Jared Meitzler; Roberto Rivera; Clyde J. Troutman


Archive | 2012

Multi-stage fiber processing system and method

Robert G. Wiley; Brett Clark; John Lower


Archive | 2008

COMPACT, ACTIVE ALIGNMENT FUSION SPLICER WITH AUTOMATIC VIEW-ANGLE COMPENSATION

Robert G. Wiley; Brett Clark; Jared Meitzler

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Philip Battle

University of St Andrews

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