Title :
Design and fabrication of LMA low-bending loss leakage channel fibers
Author :
Pal, Monalisa ; Paul, M.C. ; Ghosh, Debashis ; Bhadra, S.K. ; Saitoh, Kunimasa ; Rosa, L.S.
Author_Institution :
Fiber Opt. & Photonics Div., CSIR-Central Glass & Ceramic Res. Inst., Kolkata, India
Abstract :
We report design and fabrication of both all-glass fluorine doped and air-clad leakage-channel fibers (LCF) to achieve large-mode-area (LMA) and effectively single-mode operation with a minimum bending loss (BL) for compact Yb-doped fiber laser delivery applications. The BL and effective area for the fabricated LCF were numerically calculated by using full-vector FEM for both A-A´ plane and B-B´ plane. A high enough differential BL between the fundamental mode (~ 0.1dB/m) and the higher order mode (100dB/m) can be found in A-A´ plane. The measured BL of the air-clad LCF was 0.09 dB/m and effective area of 350 μm2 for 5 cm bending radius which is the best performance for minimum bendable LCF. The dispersion characteristic of the air-clad LCF is calculated and it has zero dispersion at 1.264μm. Single-mode nature of 1064nm light was measured at bent LCF. All-glass F-doped LCF was fabricated for easy splicing with standard SMF.
Keywords :
finite element analysis; optical fibre fabrication; optical losses; LMA low-bending loss leakage channel fibers; air-clad leakage-channel fibers; all-glass fluorine doped fibers; fabricated LCF; full-vector FEM; large-mode-area; minimum bending loss; single-mode operation; Fabrication; Frequency modulation; Glass; Optical fiber dispersion; Optical fiber polarization; Silicon compounds; LCF; LMA; bending loss; confinement loss;
Conference_Titel :
Photonics Global Conference (PGC), 2012
Conference_Location :
Singapore
Print_ISBN :
978-1-4673-2513-4
DOI :
10.1109/PGC.2012.6458074