Title :
Analysis of optical amplifier noise in coherent optical communication systems with optical image rejection receivers
Author :
Jørgensen, Bo Foged ; Mikkelsen, Benny ; Mahon, Cathal J.
Author_Institution :
Electromagn. Inst., Tech. Univ. of Denmark, Lyngby, Denmark
fDate :
5/1/1992 12:00:00 AM
Abstract :
A detailed theoretical analysis of optical amplifier noise in coherent optical communication systems with heterodyne receivers is presented. The analysis quantifies in particular how optical image rejection receiver configurations reduce the influence of optical amplifier noise on system performance. Two types of optical image rejection receivers are investigated: a novel, all-optical configuration and the conventional, microwave-based configuration. The analysis shows that local oscillator-spontaneous emission beat noise (LO-SP), signal-spontaneous emission beat noise (S-SP), and spontaneous-spontaneous beat noise (SP-SP) can all be reduced by 3 dB, thereby doubling the dynamic range of the optical amplifier. A 2.5-dB improvement in dynamic range has been demonstrated experimentally with the all-optical image rejection configuration. The implications of the increased dynamic range thus obtained are also discussed from a systems point of view
Keywords :
demodulation; electron device noise; light coherence; optical communication equipment; optical images; optical links; optical modulation; receivers; semiconductor junction lasers; all-optical configuration; coherent optical communication systems; dynamic range; heterodyne receivers; local oscillator-spontaneous emission beat noise; microwave-based configuration; optical amplifier noise; optical image rejection receivers; signal-spontaneous emission beat noise; spontaneous-spontaneous beat noise; system performance; Dynamic range; Image analysis; Noise reduction; Optical amplifiers; Optical fiber communication; Optical mixing; Optical noise; Optical receivers; Semiconductor optical amplifiers; Stimulated emission;
Journal_Title :
Lightwave Technology, Journal of