Raised Cosine Multicore Fibers For High-Density Space Division Multiplexing (H-DSDM) Systems

Author:

Rjeb Alaaeddine1,Seleem Hussein2,Ragheb Amr M.3,Fathallah Habib4,Esmail Maged A.5,Machhout Mohsen1,Alshebeili Saleh2

Affiliation:

1. Electronics and Microelectronics Lab. University of Monastir,Monastir,Tunisia

2. Tanta University,Faculty of Engineering,Department of Electronics and Electrical Communications,Tanta,Egypt

3. King Saud University,Department of Electrical Engineering,Riyadh,Saudi Arabia,11421

4. Artificial Intelligence and Data Engineering Applications Lab. University of Carthage,Bizerte,Tunisia

5. Prince Sultan University,Smart Systems Engineering Lab, Faculty of Engineering,Communications and Networks Engineering Department,Riyadh,Saudi Arabia,11586

Funder

National Plan for Science, Technology, and Innovation (MAARIFAH)

Publisher

IEEE

Reference36 articles.

1. Optimal design for crosstalk analysis in 12-core 5-LP mode homogeneous multicore fiber for different lattice structure

2. Moder-ately coupled 125–1m cladding 2 LP-mode 6-core fiber for realizing low MIMO-DSP and high spatial density;sakamoto;Proc of the Eur Conf Opt Commun Canne France,0

3. 114 Space-Division-Multiplexed Transmission over 9.8-km Weakly-Coupled-6-Mode Uncoupled-19-Core Fibers

4. Few-mode multi-core fibre with highest core multi-plicity factor;sakamoto;European Conference on Optical Communications 2015 (ECOC),0

5. Heterogeneous trench-assisted few-mode multi-core fiber with graded-index profile and square-lattice layout for low differential mode delay

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