2.488 Gb/s-318 km repeaterless transmission using erbium-doped fiber amplifiers in a direct-detection system
- 1 February 1992
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Photonics Technology Letters
- Vol. 4 (2) , 179-182
- https://doi.org/10.1109/68.122354
Abstract
The authors have achieved a 2.488 Gb/s, 318 km repeaterless transmission without any fiber dispersion penalty through a nondispersion-shifted fiber in a direct detection system. The system was loss limited with a T-R power budget of 57 dB. Three key components enabled the authors to achieve this result: (1) a Ti:LiNbO/sub 3/ external amplitude modulator enabling a dispersion-free transmission, (2) erbium-doped fiber amplifiers increasing the transmitting power to +16 dBm, and (3) an erbium-doped fiber preamplifier enabling a high-receiver sensitivity of -4.1 dBm for 10/sup -9/ BER. To the author's knowledge, this result is the longest repeaterless transmission span length ever reported for direct detection at this bit rate. From the experimental results and a theoretical model, the authors identified the sources of the receiver sensitivity degradation from the quantum limit (-48.6 dBm) and estimated the practically achievable receiver sensitivity of approximately -44 dBm ( approximately -124 photons/bit) for 2.5 Gb/s optical preamplifier detection.Keywords
This publication has 9 references indexed in Scilit:
- Trunk and distribution network application of erbium-doped fiber amplifierJournal of Lightwave Technology, 1991
- 152 photons per bit detection at 622 Mbit/s to 2.5 Gbit/s using an erbium fibre preamplifierElectronics Letters, 1990
- 2.488 Gbit/s transmission experiment at 1550 nm over 153 km standard single-mode fibreElectronics Letters, 1990
- Unrepeatered 2.4 Gbit/s transmission experiment over 250 km of step-index fibre using erbium power amplifierElectronics Letters, 1990
- 12300 ps/nm, 2.4 Gb/s nonregenerative optical fiber transmission experiment and effect of transmitter phase noiseIEEE Photonics Technology Letters, 1990
- Limitations on lightwave communications imposed by optical-fiber nonlinearitiesJournal of Lightwave Technology, 1990
- Noise performance of erbium-doped fiber amplifier pumped at 1.49 mu m, and application to signal preamplification at 1.8 Gbit/sIEEE Photonics Technology Letters, 1989
- Lightwave systems with optical amplifiersJournal of Lightwave Technology, 1989
- Lightwave primerIEEE Journal of Quantum Electronics, 1985