Title :
Few-Mode Multicore Fiber With 36 Spatial Modes (Three Modes (LP
, LP
, LP
Author :
Sasaki, Yusuke ; Amma, Yoshimichi ; Takenaga, Katsuhiro ; Matsuo, Shoichiro ; Saitoh, Kunimasa ; Koshiba, Masanori
Author_Institution :
Opt. & Electron. Lab., Fujikura Ltd., Chiba, Japan
Abstract :
The design and characteristics of a novel three-mode 12-core fiber are demonstrated. This fiber has low intercore crosstalk (IC-XT) and low differential mode group delay (DMD). In order to produce such a fiber, three new techniques are introduced to few-mode multicore fiber. A heterogeneous core arrangement with two types of cores, is used to minimize IC-XT; a multistep index, which can control DMD without sacrificing intermode crosstalk, is adopted as a core profile to reduce DMD; and a square lattice structure allows for the inclusion of 12 cores within a cladding diameter of 230 μm. Optimum design of the fiber using these techniques is determined from calculations. Finally, detailed characteristics of a three-mode 12-core fiber based on the design are reported. A fabricated 40-km fiber is confirmed to have a DMD of less than |530| ps/km over the C + L band and an estimated worst-case IC-XT of less than -55 dB/100 km at 1550 nm. This low IC-XT allows for the transmission of 32 QAM signals.
Keywords :
crosstalk; optical fibre communication; space division multiplexing; IC-XT; differential mode group delay; distance 40 km; few-mode multicore fiber; heterogeneous core arrangement; intercore crosstalk; novel three-mode 12-core fiber; space-division multiplexing; spatial modes; square lattice structure; Crosstalk; Indexes; Multicore processing; Optical fiber cables; Optical fiber communication; Optical fibers; Optimized production technology; Few-mode fiber (FMF); few-mode fiber (FMF); few-mode multicore fiber (FM-MCF); multicore fiber (MCF); optical fibers; space-division multiplexing (SDM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2375876