dc.contributor.author |
Kouloumentas, C |
en |
dc.contributor.author |
Bougioukos, M |
en |
dc.contributor.author |
Maziotis, A |
en |
dc.contributor.author |
Avramopoulos, H |
en |
dc.date.accessioned |
2014-03-01T01:33:10Z |
|
dc.date.available |
2014-03-01T01:33:10Z |
|
dc.date.issued |
2010 |
en |
dc.identifier.issn |
1041-1135 |
en |
dc.identifier.uri |
https://dspace.lib.ntua.gr/xmlui/handle/123456789/20359 |
|
dc.subject |
Differential phase-shift keying (DPSK) regenerator |
en |
dc.subject |
nonlinear optical loop mirror |
en |
dc.subject |
nonlinear Sagnac interferometer |
en |
dc.subject.classification |
Engineering, Electrical & Electronic |
en |
dc.subject.classification |
Optics |
en |
dc.subject.classification |
Physics, Applied |
en |
dc.subject.other |
40 Gb/s |
en |
dc.subject.other |
Amplified spontaneous emission noise |
en |
dc.subject.other |
Data rates |
en |
dc.subject.other |
Delay interferometer |
en |
dc.subject.other |
Differential phase-shift keying |
en |
dc.subject.other |
Differential phase-shift keying (DPSK) regenerator |
en |
dc.subject.other |
Input signal |
en |
dc.subject.other |
Nonlinear optical loop mirror |
en |
dc.subject.other |
Power penalty |
en |
dc.subject.other |
Remodulation |
en |
dc.subject.other |
Sagnac interferometer |
en |
dc.subject.other |
Simulation result |
en |
dc.subject.other |
Fiber optic sensors |
en |
dc.subject.other |
Mirrors |
en |
dc.subject.other |
Nonlinear optics |
en |
dc.subject.other |
Optical switches |
en |
dc.subject.other |
Phase shift |
en |
dc.subject.other |
Regenerators |
en |
dc.subject.other |
Interferometers |
en |
dc.title |
DPSK regeneration at 40 Gb/s and beyond using a fiber-sagnac interferometer |
en |
heal.type |
journalArticle |
en |
heal.identifier.primary |
10.1109/LPT.2010.2050875 |
en |
heal.identifier.secondary |
http://dx.doi.org/10.1109/LPT.2010.2050875 |
en |
heal.identifier.secondary |
5471124 |
en |
heal.language |
English |
en |
heal.publicationDate |
2010 |
en |
heal.abstract |
We analyze the experimental demonstration of a phase-incoherent regeneration scheme for differential phase-shift keying signals at 40 Gb/s. The scheme is based on decoding of the input signal by a 1-bit delay interferometer and subsequent optical remodulation using a fiber-Sagnac interferometer. Power penalty improvement up to 3 dB is reported for phase, amplitude, and amplified spontaneous emission noise loaded signals. Simulation results are in agreement with the experimental findings, and reveal the capability of extending the method at ultrahigh data rates. © 2006 IEEE. |
en |
heal.publisher |
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC |
en |
heal.journalName |
IEEE Photonics Technology Letters |
en |
dc.identifier.doi |
10.1109/LPT.2010.2050875 |
en |
dc.identifier.isi |
ISI:000283537800001 |
en |
dc.identifier.volume |
22 |
en |
dc.identifier.issue |
16 |
en |
dc.identifier.spage |
1187 |
en |
dc.identifier.epage |
1189 |
en |