DocumentCode
785640
Title
A new scheme of conical-wedge-shaped fiber endface for coupling between high-power laser diodes and single-mode fibers
Author
Yeh, Szu-Ming ; Huang, Sun-Yuan ; Cheng, Wood-Hi
Author_Institution
Inst. of Electro-Opt. Eng., Nat. Sun Yat-sen Univ., Kaohsiung, Taiwan
Volume
23
Issue
4
fYear
2005
fDate
4/1/2005 12:00:00 AM
Firstpage
1781
Lastpage
1786
Abstract
A new scheme for the lensed fiber employing a conical-wedge-shaped fiber endface (CWSFE) for coupling between the high-powered 980-nm laser diodes and single-mode fibers (SMFs) is proposed. The CWSFE was fabricated by following grinding and polishing techniques and then through heating in a fusing splicer to form an elliptical microlens endface. A coupling efficiency of 84% has been demonstrated. The higher coupling efficiency of the CWSFE lensed fiber was attributed to the better matching of both the elliptical Gaussian field distribution and the aspect ratio between the laser source and the fiber. In comparison to other fabrication techniques of lensed fiber used in high-power diode lasers, the advantages of this novel CWSFE structure are the ability to control over two axial curvatures and a small fiber offset through grinding and polishing processes to form a good elliptical endface. The results of this study have led to the development of a simple and reproducible fabrication process for achieving a high-yield and high-coupling CWSFE structure that is suitable for use in commercial high-power pump laser modules.
Keywords
grinding; microlenses; optical fibre couplers; optical fibre fabrication; polishing; splicing; 84 percent; 980 nm; CWSFE fabrication; aspect ratio; canonical-wedge-shaped fiber endface coupler; elliptical Gaussian filed distribution; elliptical microlens endface; fusing splicer; grinding; laser diodes; lensed fiber; polishing; single-mode fibers; Diode lasers; Fiber lasers; Heating; Laser excitation; Lenses; Microoptics; Optical control; Optical coupling; Optical device fabrication; Pump lasers; Coupling efficiency; elliptical microlens; high-power diode laser;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2005.844511
Filename
1424155
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