Towards the fundamental limits of optical-fiber communications
- 1 March 1983
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in Journal of Lightwave Technology
- Vol. 1 (1) , 131-138
- https://doi.org/10.1109/jlt.1983.1072071
Abstract
We review the theoretical limits which restrict transmission over optical fibers. The fundamental limit on channel capacity is 1 nat/photon with a coherent detection receiver or with a thermal-noise-limited receiver. With an ideal photon-counting receiver, the theoretical capacity is infinite. A practical limit of a few nats per photon for direct detection requires a bandwidth expansion consistent with monomode fibers and fast digital circuits and is 35-40 dB better than current direct detection receivers. This limit may be approached by receiver improvements (10 dB with direct detection, 17 dB with optimum coherent detection), by using digital pulse-position modulation (PPM) (10-13 dB) and by using error-correcting codes where constraints on system complexity allow.Keywords
This publication has 26 references indexed in Scilit:
- 1.5 μm optical heterodyne system operating over 30 km of monomode fibreElectronics Letters, 1982
- Observation of stimulated Brillouin scattering in low-loss silica fibre at 1.3 μmElectronics Letters, 1982
- Experimental assessment of a 140 Mbit/s coherent optical receiver at 1.52 μmElectronics Letters, 1982
- Transient stimulated Brillouin scattering in long single-mode fibresElectronics Letters, 1982
- Comparison of available detectors for digital optical fiber systems for the 1.2-1.55 µm wavelength rangeIEEE Journal of Quantum Electronics, 1982
- Experimental comparison of two long- wavelength optical receiversPublished by Optica Publishing Group ,1982
- Capacity, Cutoff Rate, and Coding for a Direct-Detection Optical ChannelIEEE Transactions on Communications, 1981
- Practical codes for photon communicationIEEE Transactions on Information Theory, 1981
- Optical Channels: Practical Limits with Photon CountingIEEE Transactions on Communications, 1978
- Information transmission by electromagnetic fieldInformation and Control, 1966