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40 Gbps Laguerre-Gaussian and Hermite-Gaussian Optical Mode Division Multiplexing for Radio over Fiber System

  • Hussein Ahmed Mahmood EMAIL logo
Published/Copyright: December 19, 2018
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Abstract

Radio over Fiber technology is utilizing the high capacity of optical fiber system and wireless mobility network. In this work, we proposed two different optical propagation modes namely Laguerre-Gaussian (LG) and Hermite-Gaussian (HG) setting to (0.1), (0.2) mode types generated by a special CW laser source at varying wavelength from 800 nm to 1150 nm with 50 nm spacing channel Mode division Multiplexing (MDM) technique. These wavelengths transmitted×5Gb/s data modulated on PSK modulator having 100 GHz radio frequency subcarrier over 5 km Parabolic-Index Multimode Fiber link. Q factor value and eye diagram used to evaluate system performance which showed the maximum Q factor value found at 800 nm channel 1 equal to 12.0113 for both LG 0 1 and HG 0.1. While the maximum Q factor appears at 800 nm channel 1 equal to 8.49756 for LG 0,2 and 3.56785 at 1000 nm channel 5 for HG 0.2.

References

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Received: 2018-09-11
Accepted: 2018-12-03
Published Online: 2018-12-19
Published in Print: 2021-10-26

© 2018 Walter de Gruyter GmbH, Berlin/Boston

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  2. Amplifiers
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  4. Influence of Conventional Optical Amplifiers for 64×10 Gbps WDM System
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  15. Networks
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  17. Receiver
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  19. Systems
  20. Novel Manchester-Based Multilevel Signaling for High-Speed Optical Communication Systems
  21. Analysis of Four Wave Mixing Effects in 16 ×10 Gb/S WDM Optical Communication System
  22. Design and Simulation of 1.28 Tbps Dense Wavelength Division Multiplex System Suitable for Long Haul Backbone
  23. Millimetre Waves Over Free Space Optics System for 5G Application
  24. 40 Gbps Laguerre-Gaussian and Hermite-Gaussian Optical Mode Division Multiplexing for Radio over Fiber System
  25. Theory
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