Title :
DPSK signals demodulation based on a multimode fiber with a central dip
Author :
Xiaoyong Chen ; Horche, Paloma R. ; Martin Minguez, Alfredo
Author_Institution :
Dept. de Tecnol. Fotonica y Bioingenieria, ETSIT-Univ. Politec. de Madrid, Madrid, Spain
Abstract :
Differential Phase Shift Keying (DPSK) modulation format has been shown as a robust solution for next-generation optical transmission systems. One key device enabling such systems is a delay interferometer, converting the phase modulation signal into the intensity modulation signal to be detected by the photodiodes. Usually, a standard Mach-Zehnder interferometer (MZI) is used for demodulating a DPSK signal. In this paper, we develop an MZI which is based on all-fiber Multimode Interference (MI) structure: a multimode fiber (MMF) with a central dip, located between two single-mode fibers (SMFs) without any transition zones. The MI based MZI (MI-MZI) is more stable than the standard MZI as the two arms share the same MMF, reducing the impact of the external effects, such as temperature and others. Performance of this MI-MZI is analyzed theoretically and experimentally from transmission spectrum. Experimental results shows that high interference extinction ratio is obtained, which is far higher than that obtained from a normal graded-index based MI-MZI. Finally, by software simulation, we demonstrate that our proposed MI-MZI can be used for demodulating a 40 Gbps DPSK signal. The performance of the MI-MZI based DPSK receiver is analyzed from the sensitivity. Simulation results show that sensitivity of the proposed receiver is about -22.3 dBm for a BER of 10-15 and about -23.8 dBm for a BER of 10-9.
Keywords :
Mach-Zehnder interferometers; delays; differential phase shift keying; error statistics; intensity modulation; optical fibre networks; optical receivers; photodiodes; BER; DPSK signal; DPSK signal demodulation; MI-MZI based DPSK receiver; all-fiber multimode interference structure; bit rate 40 Gbit/s; central dip; delay interferometer; differential phase shift keying; extinction ratio; graded-index based MI-MZI; intensity modulation signal; multimode fiber; next-generation optical transmission systems; phase modulation signal; photodiodes; single-mode fibers; software simulation; standard Mach-Zehnder interferometer; Demodulation; Differential phase shift keying; Interference; Optical fiber devices; Optical fiber networks; Receivers; differential phase shift keying; modal interference; optical communication; optical reciever;
Conference_Titel :
Networks and Optical Communications - (NOC), 2014 19th European Conference on
Conference_Location :
Milano
DOI :
10.1109/NOC.2014.6996821