Tunable multiwavelength fiber laser employing a comb filter based on a polarization-diversity loop configuration

A tunable multiwavelength fiber laser based on a semiconductor optical amplifier (SOA) is newly proposed. The proposed fiber laser employs a fiber comb filter based on a polarization-diversity loop configuration (PDLC) for the multiwavelength selection. The spectral characteristic of the comb filter...

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Veröffentlicht in:Journal of lightwave technology 2006-04, Vol.24 (4), p.1805-1811
Hauptverfasser: YOON, Ilyong, YONG WOOK LEE, JUNG, Jaehoon, LEE, Byoungho
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container_end_page 1811
container_issue 4
container_start_page 1805
container_title Journal of lightwave technology
container_volume 24
creator YOON, Ilyong
YONG WOOK LEE
JUNG, Jaehoon
LEE, Byoungho
description A tunable multiwavelength fiber laser based on a semiconductor optical amplifier (SOA) is newly proposed. The proposed fiber laser employs a fiber comb filter based on a polarization-diversity loop configuration (PDLC) for the multiwavelength selection. The spectral characteristic of the comb filter is graphically explained by tracing the state of polarization (SOP) of the light propagating through the filter on the Poincare sphere. Particularly, the method of adjusting the filter characteristics is established with the help of the Poincare-sphere representation. The experimental results show that 18 laser lines oscillate with the signal to amplified spontaneous emission noise ratio over 25 dB. Particularly, all of the laser lines with a fixed channel spacing of /spl sim/ 0.8 nm can be continuously shifted by adjusting only a wave plate contained within the filter.
doi_str_mv 10.1109/JLT.2006.871013
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The proposed fiber laser employs a fiber comb filter based on a polarization-diversity loop configuration (PDLC) for the multiwavelength selection. The spectral characteristic of the comb filter is graphically explained by tracing the state of polarization (SOP) of the light propagating through the filter on the Poincare sphere. Particularly, the method of adjusting the filter characteristics is established with the help of the Poincare-sphere representation. The experimental results show that 18 laser lines oscillate with the signal to amplified spontaneous emission noise ratio over 25 dB. 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The proposed fiber laser employs a fiber comb filter based on a polarization-diversity loop configuration (PDLC) for the multiwavelength selection. The spectral characteristic of the comb filter is graphically explained by tracing the state of polarization (SOP) of the light propagating through the filter on the Poincare sphere. Particularly, the method of adjusting the filter characteristics is established with the help of the Poincare-sphere representation. The experimental results show that 18 laser lines oscillate with the signal to amplified spontaneous emission noise ratio over 25 dB. Particularly, all of the laser lines with a fixed channel spacing of /spl sim/ 0.8 nm can be continuously shifted by adjusting only a wave plate contained within the filter.</abstract><cop>New York, NY</cop><pub>IEEE</pub><doi>10.1109/JLT.2006.871013</doi><tpages>7</tpages></addata></record>
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source IEEE Electronic Library (IEL)
subjects Applied sciences
Channels
Circuit properties
Electric, optical and optoelectronic circuits
Electronics
Exact sciences and technology
Fiber lasers
Integrated optics. Optical fibers and wave guides
Laser noise
Lasers
Multiwavelength fiber laser
Noise levels
Optical and optoelectronic circuits
Optical fiber filters
Optical fiber polarization
Optical propagation
polarization-diversity loop configuration (PDLC)
Semiconductor lasers
semiconductor optical amplifier (SOA)
Semiconductor optical amplifiers
Signal to noise ratio
Spectra
Spontaneous emission
Tunable circuits and devices
Wave plates
title Tunable multiwavelength fiber laser employing a comb filter based on a polarization-diversity loop configuration
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