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Bandwidth-efficient phase modulation techniques for Stimulated Brillouin Scattering suppression in fiber optic parametric amplifiers |
Optics Express, Vol. 18, Issue 17, pp. 18138-18150 (2010)
http://dx.doi.org/10.1364/OE.18.018138
Acrobat PDF (3132 KB)
Abstract
Two novel bandwidth efficient pump-dithering Stimulated Brillouin Scattering (SBS) suppression techniques are introduced. The techniques employ a frequency-hopped chirp and an RF noise source to impart phase modulation on the pumps of a two pump Fiber Optical Parametric Amplifier (FOPA). The effectiveness of the introduced techniques is confirmed by measurements of the SBS threshold increase and the associated improvements relative to the current state of the art. Additionally, the effect on the idler signal integrity is presented as measured following amplification from a two pump FOPA employing both techniques. The measured 0.8 dB penalty with pumps dithered by an RF noise source, after accruing 160ps/nm of dispersion with 38 dB conversion gain in a two-pump FOPA is the lowest reported to date.
© 2010 OSA
1. Introduction
T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef]
C. J. McKinstrie, S. Radic, and A. R. Chraplyvy, “Parametric Amplifiers Driven by Two Pump Waves,” IEEE J. Sel. Top. Quantum Electron. 8(3), 538–547 (2002). [CrossRef]
C. J. McKinstrie, S. Radic, and A. R. Chraplyvy, “Parametric Amplifiers Driven by Two Pump Waves,” IEEE J. Sel. Top. Quantum Electron. 8(3), 538–547 (2002). [CrossRef]
D. A. Fishman and J. A. Nagel, “Degradations Due to Stimulated Brillouin Scattering in Multigigabit Intensity-Modulated Fiber- Optic Systems,” J. Lightwave Technol. 11(11), 1721–1728 (1993). [CrossRef]
C. J. McKinstrie, S. Radic, and A. R. Chraplyvy, “Parametric Amplifiers Driven by Two Pump Waves,” IEEE J. Sel. Top. Quantum Electron. 8(3), 538–547 (2002). [CrossRef]
J. Hansryd, F. Dross, M. Westlund, P. A. Andrekson, and S. N. Knudsen, “Increase of the SBS Threshold in a Short Highly Nonlinear Fiber by Applying a Temperature Distribution,” J. Lightwave Technol. 19(11), 1691–1697 (2001). [CrossRef]
J. M. C. Boggio, J. D. Marconi, and H. L. Fragnito, “Experimental and numerical investigation of the SBS-threshold increase in an optical fiber by applying strain distributions,” J. Lightwave Technol. 23(11), 3808–3814 (2005). [CrossRef]
K. Shiraki, M. Ohashi, and M. Tateda, “SBS Threshold of a Fiber with a Brillouin Frequency Shift Distribution,” J. Lightwave Technol. 14(1), 50–57 (1996). [CrossRef]
Y. Aoki, K. Tajima, and I. Mito, “Input Power Limits of Single-Mode Optical Fibers due to Stimulated Brillouin Scattering in Optical Communication Systems,” J. Lightwave Technol. 6(5), 710–719 (1988). [CrossRef]
T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef]
S. Radic and C. J. McKinstrie, “Two-Pump Fiber Parametric Amplifiers,” Opt. Fiber Technol. 9(1), 7–23 (2003). [CrossRef]
T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef]
J. Hansryd, F. Dross, M. Westlund, P. A. Andrekson, and S. N. Knudsen, “Increase of the SBS Threshold in a Short Highly Nonlinear Fiber by Applying a Temperature Distribution,” J. Lightwave Technol. 19(11), 1691–1697 (2001). [CrossRef]
2. Theoretical foundations
T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef]
A. Mussot, M. Le Parquier, and P. Szriftgiser, “Thermal noise for SBS suppression in fiber optical parametric amplifiers,” Opt. Commun. 283(12), 2607–2610 (2010). [CrossRef]
3. The SBS threshold increase quantification
3. The effect of pump dithering on signal integrity
3.1 Signal integrity analysis: experimental setup
P. Kylemark, P. O. Hedekvist, H. Sunnerud, M. Karlsson, and P. A. Andrekson, “Noise Characteristics of Fiber Optical Parametric Amplifiers,” J. Lightwave Technol. 22(2), 409–416 (2004). [CrossRef]
S. Radic and C. J. McKinstrie, “Two-Pump Fiber Parametric Amplifiers,” Opt. Fiber Technol. 9(1), 7–23 (2003). [CrossRef]
3.2 Signal integrity analysis: results and discussion
5. Conclusion
Acknowledgment
References and links
M. Marhic, Fiber Optical Parametric Amplifiers, Oscillators and Related Devices, Cambridge University Press, 2007. | |
T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef] | |
J. M. Chavez Boggio, S, Moro, E. Myslivets, J.R. Windmiller, N. Alic, and S. Radic. “Raman-induced gain distortions in double-pumped parametric amplifiers,” in Proc. OFC/NFOEC 2009, paper OMH5, San Diego, CA, 2009. | |
S. Moro, E. Myslivets, N. Alic, J. M. Chavez Boggio, J. R. Windmiller, J. X. Zhao, A. J. Anderson, and S. Radic, “Synthesis of Equalized Broadband Gain in One-Pump Fiber-Optic Parametric Amplifiers,” in Proc. OFC/NFOEC 2009, paper OMH4, San Diego, CA, 2009. | |
J. M. Chavez Boggio, S. Moro, B. P. P. Kuo, N. Alic, B. Stroseel, and S. Radic, “Tunable All-Fiber Short-Wavelength-IR Transmitter,” in Postdeadline Papers OFC/NFOEC, paper PDPC9, San Diego, CA, 2009. | |
C.-S. Bres, A. O. J. Wiberg, B. P.-P. Kuo, J. M. Chavez-Boggio, C. F. Marki, N. Alic, and S. Radic, “Single Gate 320-to-8x40 Gb/s Demultiplexing,” in Proc. OFC/NFOEC 2009, Postdeadline Paper PA4, San Diego, CA 2009. | |
C. J. McKinstrie, S. Radic, and A. R. Chraplyvy, “Parametric Amplifiers Driven by Two Pump Waves,” IEEE J. Sel. Top. Quantum Electron. 8(3), 538–547 (2002). [CrossRef] | |
D. A. Fishman and J. A. Nagel, “Degradations Due to Stimulated Brillouin Scattering in Multigigabit Intensity-Modulated Fiber- Optic Systems,” J. Lightwave Technol. 11(11), 1721–1728 (1993). [CrossRef] | |
J. Hansryd, F. Dross, M. Westlund, P. A. Andrekson, and S. N. Knudsen, “Increase of the SBS Threshold in a Short Highly Nonlinear Fiber by Applying a Temperature Distribution,” J. Lightwave Technol. 19(11), 1691–1697 (2001). [CrossRef] | |
R. Engelbrecht, M. Mueller, and B. Schmauss, “SBS shaping and suppression by arbitrary strain distributions realized by a fiber coiling machine,” in Proc. IEEE/LEOS Winter Topicals, paper WC1.3, pp.248–249, 2009. | |
J. M. C. Boggio, J. D. Marconi, and H. L. Fragnito, “Experimental and numerical investigation of the SBS-threshold increase in an optical fiber by applying strain distributions,” J. Lightwave Technol. 23(11), 3808–3814 (2005). [CrossRef] | |
K. Shiraki, M. Ohashi, and M. Tateda, “SBS Threshold of a Fiber with a Brillouin Frequency Shift Distribution,” J. Lightwave Technol. 14(1), 50–57 (1996). [CrossRef] | |
Y. Aoki, K. Tajima, and I. Mito, “Input Power Limits of Single-Mode Optical Fibers due to Stimulated Brillouin Scattering in Optical Communication Systems,” J. Lightwave Technol. 6(5), 710–719 (1988). [CrossRef] | |
S. K. Korotky, P. B. Hansen, L. Eskildsen, and J. J. Veselka, “Efficient Phase Modulation Scheme for Suppressing Stimulated Brillouin Scattering,” in Tech. Dig. Int. Conf. Integrated Optics and Optical Fiber Comm., vol. 1, paper WD2–1, pp. 110–111, Hong Kong, 1995. | |
S. Radic and C. J. McKinstrie, “Two-Pump Fiber Parametric Amplifiers,” Opt. Fiber Technol. 9(1), 7–23 (2003). [CrossRef] | |
J. M. Chavez Boggio, F. A. Callegari, A. Guimaraes, J. D. Marconi, and H. L. Fragnito, “Q Penalties due to Pump Phase Modulation in FOPAs,” in Proc. OFC/NFOEC 2005, paper OWN4, Anaheim, CA, 2005. | |
N. Alic, J. R. Windmiller, J. B. Coles, S. Moro, E. Myslivets, R. E. Saperstein, J. M. Chavez Boggio, C. S. Bres, and S. Radic, “105-ns continuously tunable delay of 10-Gb/s optical signal,” IEEE Photon. Technol. Lett.(2008). | |
J. B. Coles, Advanced Phase Modulation Techniques for Stimulated Brillouin Scattering Suppression in Fiber Optic Parametric Amplifiers. M.S. Thesis, University of California, San Diego, 2009. | |
A. Mussot, M. Le Parquier, and P. Szriftgiser, “Thermal noise for SBS suppression in fiber optical parametric amplifiers,” Opt. Commun. 283(12), 2607–2610 (2010). [CrossRef] | |
G. P. Agrawal, Nonlinear Fiber Optics , 3rd ed. San Diego, CA: Academic, 2001. | |
P. Kylemark, P. O. Hedekvist, H. Sunnerud, M. Karlsson, and P. A. Andrekson, “Noise Characteristics of Fiber Optical Parametric Amplifiers,” J. Lightwave Technol. 22(2), 409–416 (2004). [CrossRef] |
OCIS Codes
(060.2310) Fiber optics and optical communications : Fiber optics
(060.2320) Fiber optics and optical communications : Fiber optics amplifiers and oscillators
(060.4510) Fiber optics and optical communications : Optical communications
(290.5900) Scattering : Scattering, stimulated Brillouin
ToC Category:
Fiber Optics and Optical Communications
History
Original Manuscript: May 6, 2010
Revised Manuscript: July 30, 2010
Manuscript Accepted: August 6, 2010
Published: August 9, 2010
Citation
J. B. Coles, B. P.-P. Kuo, N. Alic, S. Moro, C.-S. Bres, J. M. Chavez Boggio, P.A. Andrekson, M. Karlsson, and S. Radic, "Bandwidth-efficient phase modulation techniques for Stimulated Brillouin Scattering suppression in fiber optic parametric amplifiers," Opt. Express 18, 18138-18150 (2010)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-18-17-18138
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References
- M. Marhic, Fiber Optical Parametric Amplifiers, Oscillators and Related Devices, Cambridge University Press, 2007.
- T. Torounidis, P. A. Andrekson, and B. E. Olsson, “Fiber-Optical Parametric Amplifier with 70-dB Gain,” IEEE Photon. Technol. Lett. 18(10), 1194–1196 (2006). [CrossRef]
- J. M. Chavez Boggio, S, Moro, E. Myslivets, J.R. Windmiller, N. Alic, and S. Radic. “Raman-induced gain distortions in double-pumped parametric amplifiers,” in Proc. OFC/NFOEC 2009, paper OMH5, San Diego, CA, 2009.
- S. Moro, E. Myslivets, N. Alic, J. M. Chavez Boggio, J. R. Windmiller, J. X. Zhao, A. J. Anderson, and S. Radic, “Synthesis of Equalized Broadband Gain in One-Pump Fiber-Optic Parametric Amplifiers,” in Proc. OFC/NFOEC 2009, paper OMH4, San Diego, CA, 2009.
- J. M. Chavez Boggio, S. Moro, B. P. P. Kuo, N. Alic, B. Stroseel, and S. Radic, “Tunable All-Fiber Short-Wavelength-IR Transmitter,” in Postdeadline Papers OFC/NFOEC, paper PDPC9, San Diego, CA, 2009.
- C.-S. Bres, A. O. J. Wiberg, B. P.-P. Kuo, J. M. Chavez-Boggio, C. F. Marki, N. Alic, and S. Radic, “Single Gate 320-to-8x40 Gb/s Demultiplexing,” in Proc. OFC/NFOEC 2009, Postdeadline Paper PA4, San Diego, CA 2009.
- C. J. McKinstrie, S. Radic, and A. R. Chraplyvy, “Parametric Amplifiers Driven by Two Pump Waves,” IEEE J. Sel. Top. Quantum Electron. 8(3), 538–547 (2002). [CrossRef]
- D. A. Fishman and J. A. Nagel, “Degradations Due to Stimulated Brillouin Scattering in Multigigabit Intensity-Modulated Fiber- Optic Systems,” J. Lightwave Technol. 11(11), 1721–1728 (1993). [CrossRef]
- J. Hansryd, F. Dross, M. Westlund, P. A. Andrekson, and S. N. Knudsen, “Increase of the SBS Threshold in a Short Highly Nonlinear Fiber by Applying a Temperature Distribution,” J. Lightwave Technol. 19(11), 1691–1697 (2001). [CrossRef]
- R. Engelbrecht, M. Mueller, and B. Schmauss, “SBS shaping and suppression by arbitrary strain distributions realized by a fiber coiling machine,” in Proc. IEEE/LEOS Winter Topicals, paper WC1.3, pp.248–249, 2009.
- J. M. C. Boggio, J. D. Marconi, and H. L. Fragnito, “Experimental and numerical investigation of the SBS-threshold increase in an optical fiber by applying strain distributions,” J. Lightwave Technol. 23(11), 3808–3814 (2005). [CrossRef]
- K. Shiraki, M. Ohashi, and M. Tateda, “SBS Threshold of a Fiber with a Brillouin Frequency Shift Distribution,” J. Lightwave Technol. 14(1), 50–57 (1996). [CrossRef]
- Y. Aoki, K. Tajima, and I. Mito, “Input Power Limits of Single-Mode Optical Fibers due to Stimulated Brillouin Scattering in Optical Communication Systems,” J. Lightwave Technol. 6(5), 710–719 (1988). [CrossRef]
- S. K. Korotky, P. B. Hansen, L. Eskildsen, and J. J. Veselka, “Efficient Phase Modulation Scheme for Suppressing Stimulated Brillouin Scattering,” in Tech. Dig. Int. Conf. Integrated Optics and Optical Fiber Comm., vol. 1, paper WD2–1, pp. 110–111, Hong Kong, 1995.
- S. Radic and C. J. McKinstrie, “Two-Pump Fiber Parametric Amplifiers,” Opt. Fiber Technol. 9(1), 7–23 (2003). [CrossRef]
- J. M. Chavez Boggio, F. A. Callegari, A. Guimaraes, J. D. Marconi, and H. L. Fragnito, “Q Penalties due to Pump Phase Modulation in FOPAs,” in Proc. OFC/NFOEC 2005, paper OWN4, Anaheim, CA, 2005.
- N. Alic, J. R. Windmiller, J. B. Coles, S. Moro, E. Myslivets, R. E. Saperstein, J. M. Chavez Boggio, C. S. Bres, and S. Radic, “105-ns continuously tunable delay of 10-Gb/s optical signal,” IEEE Photon. Technol. Lett.(2008).
- J. B. Coles, Advanced Phase Modulation Techniques for Stimulated Brillouin Scattering Suppression in Fiber Optic Parametric Amplifiers. M.S. Thesis, University of California, San Diego, 2009.
- A. Mussot, M. Le Parquier, and P. Szriftgiser, “Thermal noise for SBS suppression in fiber optical parametric amplifiers,” Opt. Commun. 283(12), 2607–2610 (2010). [CrossRef]
- G. P. Agrawal, Nonlinear Fiber Optics, 3rd ed. San Diego, CA: Academic, 2001.
- P. Kylemark, P. O. Hedekvist, H. Sunnerud, M. Karlsson, and P. A. Andrekson, “Noise Characteristics of Fiber Optical Parametric Amplifiers,” J. Lightwave Technol. 22(2), 409–416 (2004). [CrossRef]
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