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Updated: May 15, 2026

A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
Published on: September 5, 2019
Simple intradyne PSK system for udWDM-PON.
Josep Prat1, Victor Polo, Panagiotis Zakynthinos
1Department of Signal Theory and Communications, Universitat Politècnica de Catalunya; Jordi Girona D4; 08034 Barcelona, Spain. jprat@tsc.upc.edu
This study presents a cost-effective homodyne coherent receiver for ultra-dense WDM-PON systems. The novel design achieves high sensitivity and tolerance to phase noise using readily available components.
Area of Science:
- Optical Communications
- Photonics
- Telecommunications Engineering
Background:
- Ultra-dense wavelength-division multiplexing passive optical networks (WDM-PON) require advanced receiver technologies.
- Traditional coherent receivers often rely on complex and expensive components like 90° hybrids.
Purpose of the Study:
- To present a novel homodyne coherent receiver for WDM-PON utilizing off-the-shelf components.
- To optimize the receiver for Binary Phase Shift Keying (BPSK) signals and evaluate its performance.
Main Methods:
- The receiver employs a conventional Distributed Feedback (DFB) laser, a phase-switched clock signal, an optical coupler (replacing a 90° hybrid), balanced photodetectors, and digital signal processing.
- Phase swing optimization for DBPSK signals was performed.
- Experimental evaluation of receiver sensitivity against varying laser linewidths, frequency offset, and clock time delay.
Main Results:
- Achieved a receiver sensitivity of -48 dBm at a Bit Error Rate (BER) of 10⁻³.
- Demonstrated high tolerance to phase noise, a critical factor in coherent detection.
- Assessed acceptable frequency offset and clock time delay limits for system operation.
Conclusions:
- The proposed homodyne coherent receiver offers a cost-effective and high-performance solution for ultra-dense WDM-PON.
- The use of off-the-shelf components and an optical coupler simplifies the design without compromising sensitivity.
- The receiver's robustness to phase noise and timing impairments makes it suitable for practical deployment.
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