A soliton transmitter using a CW laser and an NRZ driven Mach-Zehnder modulator
We demonstrate a practical soliton transmitter in which optical pulses are simultaneously generated and encoded in a single external modulator driven by a nonreturn-to-zero (NRZ) waveform. The soliton system performance of this transmitter compares favorably with more commonly used soliton transmitt...
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Published in: | IEEE photonics technology letters Vol. 8; no. 7; pp. 950 - 952 |
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Main Authors: | , , , , , |
Format: | Journal Article |
Language: | English |
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01-07-1996
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Abstract | We demonstrate a practical soliton transmitter in which optical pulses are simultaneously generated and encoded in a single external modulator driven by a nonreturn-to-zero (NRZ) waveform. The soliton system performance of this transmitter compares favorably with more commonly used soliton transmitters while at the same time being less complex. The transmitter was capable of sending pseudorandom data at 2.5 Gb/s through 12 000 km of fiber with a bit error of 10/sup -10/ in a system without frequency-guiding filters. |
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AbstractList | We demonstrate a practical soliton transmitter in which optical pulses are simultaneously generated and encoded in a single external modulator driven by a nonreturn-to-zero (NRZ) waveform. The soliton system performance of this transmitter compares favorably with more commonly used soliton transmitters while at the same time being less complex. The transmitter was capable of sending pseudorandom data at 2.5 Gb/s through 12 000 km of fiber with a bit error of 10/sup -10/ in a system without frequency-guiding filters. We demonstrate a practical soliton transmitter in which optical pulses are simultaneously generated and encoded in a single external modulator driven by a nonreturn-to-zero (NRZ) waveform. The soliton system performance of this transmitter compares favorably with more commonly used soliton transmitters while at the same time being less complex. The transmitter was capable of sending pseudorandom data at 2.5 Gb/s through 12 000 km of fiber with a bit error of 10(-10) in a system without frequency-guiding filters |
Author | Korotky, S.K. Froberg, N.M. Gnauck, A.H. Raybon, G. Mamyshev, P.V. Veselka, J.J. |
Author_xml | – sequence: 1 givenname: J.J. surname: Veselka fullname: Veselka, J.J. organization: Crawford Hill Lab., AT&T Bell Labs., Holmdel, NJ, USA – sequence: 2 givenname: S.K. surname: Korotky fullname: Korotky, S.K. organization: Crawford Hill Lab., AT&T Bell Labs., Holmdel, NJ, USA – sequence: 3 givenname: P.V. surname: Mamyshev fullname: Mamyshev, P.V. organization: Crawford Hill Lab., AT&T Bell Labs., Holmdel, NJ, USA – sequence: 4 givenname: A.H. surname: Gnauck fullname: Gnauck, A.H. – sequence: 5 givenname: G. surname: Raybon fullname: Raybon, G. – sequence: 6 givenname: N.M. surname: Froberg fullname: Froberg, N.M. |
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References | ref11 veselka (ref12) 1995 korotky (ref13) 1991 ref10 couch (ref14) 1987 harvey (ref15) 1995 ref2 ref1 ref17 ref8 ref9 ref4 ref3 ref6 nyman (ref16) 0 ref5 veselka (ref7) 0 |
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Snippet | We demonstrate a practical soliton transmitter in which optical pulses are simultaneously generated and encoded in a single external modulator driven by a... |
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StartPage | 950 |
SubjectTerms | Bit error rate Fiber lasers Laser mode locking Lithium niobate Optical pulse generation Optical pulses Optical signal processing Optical transmitters Pulse modulation Solitons |
Title | A soliton transmitter using a CW laser and an NRZ driven Mach-Zehnder modulator |
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