Polarization shift keying (POLSK) phase diversity homodyne system with multiplying detection in coherent optical communications

Ichiro Seto, Tomoaki Ohtsuki, Iwao Sasase, Shinsaku Mori

Research output: Contribution to journalArticle

Abstract

We propose a Polarization Shift Keying (POLSK) phase diversity homodyne system with multiplying detection in coherent optical communications. The proposed system uses only one of three Stokes parameters, which is the phase difference between two orthogonal polarizations. Although such systems using only one Stokes parameter are very sensitive to polarization fluctuation by using the multiplying detection with a combination of in-phase and quadrature optical signal components on two orthogonal polarizations.

Original languageEnglish
Pages (from-to)381-395
Number of pages15
JournalFiber and Integrated Optics
Volume12
Issue number4
Publication statusPublished - 1993

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phase shift keying
Phase shift keying
Optical communication
optical communication
Polarization
polarization
quadratures

ASJC Scopus subject areas

  • Atomic and Molecular Physics, and Optics

Cite this

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title = "Polarization shift keying (POLSK) phase diversity homodyne system with multiplying detection in coherent optical communications",
abstract = "We propose a Polarization Shift Keying (POLSK) phase diversity homodyne system with multiplying detection in coherent optical communications. The proposed system uses only one of three Stokes parameters, which is the phase difference between two orthogonal polarizations. Although such systems using only one Stokes parameter are very sensitive to polarization fluctuation by using the multiplying detection with a combination of in-phase and quadrature optical signal components on two orthogonal polarizations.",
author = "Ichiro Seto and Tomoaki Ohtsuki and Iwao Sasase and Shinsaku Mori",
year = "1993",
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AU - Seto, Ichiro

AU - Ohtsuki, Tomoaki

AU - Sasase, Iwao

AU - Mori, Shinsaku

PY - 1993

Y1 - 1993

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AB - We propose a Polarization Shift Keying (POLSK) phase diversity homodyne system with multiplying detection in coherent optical communications. The proposed system uses only one of three Stokes parameters, which is the phase difference between two orthogonal polarizations. Although such systems using only one Stokes parameter are very sensitive to polarization fluctuation by using the multiplying detection with a combination of in-phase and quadrature optical signal components on two orthogonal polarizations.

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