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Fundamentals of Coherent Optical Fiber Communications

Journal of Lightwave Technology · 2015 · Vol. 34(1) · pp. 157–179
Kumiko Kikuchi

Abstract

The recently developed digital coherent receiver enables us to employ a variety of spectrally efficient modulation formats such as M-ary phase-shift keying and quadrature-amplitude modulation. Moreover, in the digital domain, we can equalize all linear transmission impairments such as group-velocity dispersion and polarization-mode dispersion of transmission fibers, because coherent detection preserves the phase information of the optical signal. This paper reviews the history of research and development related to coherent optical communications and describes the principle of coherent detection, including its quantum-noise characteristics. In addition, it discusses the role of digital signal processing in mitigating linear transmission impairments, estimating the carrier phase, and tracking the state of polarization of the signal in coherent receivers.

Optical Network TechnologiesAdvanced Photonic Communication SystemsSemiconductor Lasers and Optical DevicesElectronic engineeringQuadrature amplitude modulationPolarization mode dispersionAnalog transmissionComputer scienceOpticsKeyingTransmission (telecommunications)Phase-shift keyingOptical communications repeater

Funding

  • Ministry of Education, Culture, Sports, Science and Technology
Citations
950
FWCI
24.82
field-weighted impact
References
77
Percentile
100%
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Citations per year
References
Low-noise erbium-doped fibre amplifier operating at 1.54μm
Electronics Letters · 1987 · 882 citations
Theory of the linewidth of semiconductor lasers
IEEE Journal of Quantum Electronics · 1982 · 2,393 citations
Digital filters for coherent optical receivers
Optics Express · 2008 · 1,201 citations
Frequency chirping in external modulators
Journal of Lightwave Technology · 1988 · 458 citations
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