Pedestal-Free Pulse Source for High Data Rate Optical Time-Division Multiplexing Based on Fiber-Optical Parametric Processes

In this paper, an RF-driven pedestal-free cavity-less 40 GHz pulse source for generation of high-speed optical time-division multiplexing signal is presented. The pulse source is based on pulse compression by means of self-phase modulation in combination with subsequent filtering. Further compressio...

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Published in:IEEE journal of quantum electronics Vol. 45; no. 11; pp. 1325 - 1330
Main Authors: Wiberg, A.O.J., Bres, C.-S., Kuo, B.P.P., Zhao, J.X., Alic, N., Radic, S.
Format: Journal Article
Language:English
Published: New York IEEE 01-11-2009
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract In this paper, an RF-driven pedestal-free cavity-less 40 GHz pulse source for generation of high-speed optical time-division multiplexing signal is presented. The pulse source is based on pulse compression by means of self-phase modulation in combination with subsequent filtering. Further compression and pedestal removal of the pulse was achieved in one-pump fiber-optic parametric amplifier seeded by a continuous-wave laser source. The obtained idler pulses were characterized by a full-width at half-maximum pulsewidth of 1.2 ps and an SNR of 36 dB. Generation of 320 Gb/s data stream with a Q-factor of 20 dB is successfully demonstrated using the proposed pulse source.
AbstractList In this paper, an RF-driven pedestal-free cavity-less 40 GHz pulse source for generation of high-speed optical time-division multiplexing signal is presented. The pulse source is based on pulse compression by means of self-phase modulation in combination with subsequent filtering. Further compression and pedestal removal of the pulse was achieved in one-pump fiber-optic parametric amplifier seeded by a continuous-wave laser source. The obtained idler pulses were characterized by a full-width at half-maximum pulsewidth of 1.2 ps and an SNR of 36 dB. Generation of 320 Gb/s data stream with a Q-factor of 20 dB is successfully demonstrated using the proposed pulse source.
In this paper, an RF-driven pedestal-free cavity-less 40 GHz pulse source for generation of high-speed optical time-division multiplexing signal is presented. The pulse source is based on pulse compression by means of self-phase modulation in combination with subsequent filtering. Further compression and pedestal removal of the pulse was achieved in one-pump fiber-optic parametric amplifier seeded by a continuous-wave laser source. The obtained idler pulses were characterized by a full-width at half-maximum pulsewidth of 1.2 ps and an SNR of 36 dB. Generation of 320 Gb/s data stream with a {rm Q}-factor of 20 dB is successfully demonstrated using the proposed pulse source.
Author Alic, N.
Kuo, B.P.P.
Zhao, J.X.
Wiberg, A.O.J.
Bres, C.-S.
Radic, S.
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10.1109/LPT.2004.839428
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10.1109/ECOC.1998.732666
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SubjectTerms Compressing
Fiber nonlinear optics
Fiber optics
Filtering
Four-photon mixing optical time-division multiplexing (OTDM)
High speed
High speed optical techniques
Modulation
Multiplexing
Noise levels
optical fiber communication
Optical fibers
Optical filters
Optical modulation
optical parametric amplifier
Optical pulse compression
Optical pulse generation
optical pulse shaping
Optical pulses
parametric process
Pulse amplifiers
Pulse compression methods
Pulse modulation
Title Pedestal-Free Pulse Source for High Data Rate Optical Time-Division Multiplexing Based on Fiber-Optical Parametric Processes
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