An optical FSK transmitter based on an integrated DFB laser-EA modulator and its application in optical labeling

Publication: Research - peer-reviewJournal article – Annual report year: 2003

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@article{fa36c21ee1f34c9cbf8fb98e4c0aa990,
title = "An optical FSK transmitter based on an integrated DFB laser-EA modulator and its application in optical labeling",
publisher = "I E E E",
author = "Jianfeng Zhang and Nan Chi and Holm-Nielsen, {Pablo Villanueva} and Christophe Peucheret and Palle Jeppesen",
note = "Copyright: 2003 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE",
year = "2003",
doi = "10.1109/LPT.2003.813415",
volume = "15",
number = "7",
pages = "984 -- 986",
journal = "I E E E Photonics Technology Letters",
issn = "1041-1135",

}

RIS

TY - JOUR

T1 - An optical FSK transmitter based on an integrated DFB laser-EA modulator and its application in optical labeling

A1 - Zhang,Jianfeng

A1 - Chi,Nan

A1 - Holm-Nielsen,Pablo Villanueva

A1 - Peucheret,Christophe

A1 - Jeppesen,Palle

AU - Zhang,Jianfeng

AU - Chi,Nan

AU - Holm-Nielsen,Pablo Villanueva

AU - Peucheret,Christophe

AU - Jeppesen,Palle

PB - I E E E

PY - 2003

Y1 - 2003

N2 - An optical frequency-shift-keying (FSK) transmitter based on an integrated distributed feedback laser-electroabsorption modulator is proposed and demonstrated. The feasibility of its application in optical labeling is also validated by the experimental results. The generated optical signal, consisting of a 10-Gb/s intensity-modulated payload and a 312-Mb/s FSK label, can be recovered error free after transmission over 88-km standard single-mode fiber.

AB - An optical frequency-shift-keying (FSK) transmitter based on an integrated distributed feedback laser-electroabsorption modulator is proposed and demonstrated. The feasibility of its application in optical labeling is also validated by the experimental results. The generated optical signal, consisting of a 10-Gb/s intensity-modulated payload and a 312-Mb/s FSK label, can be recovered error free after transmission over 88-km standard single-mode fiber.

U2 - 10.1109/LPT.2003.813415

DO - 10.1109/LPT.2003.813415

JO - I E E E Photonics Technology Letters

JF - I E E E Photonics Technology Letters

SN - 1041-1135

IS - 7

VL - 15

SP - 984

EP - 986

ER -