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Long-haul transmission of 35-Gb/s all-optical OFDM signal without using tunable dispersion compensation and time gating |
Optics Express, Vol. 19, Issue 26, pp. B811-B816 (2011)
http://dx.doi.org/10.1364/OE.19.00B811
Acrobat PDF (1150 KB)
Abstract
We propose that the optical OFDM technique using all optical discrete Fourier transform (DFT) has potential as a viable alternative for upgrading long-haul optical transmission systems towards 100-Gb/s. We demonstrate transmission of 35-Gb/s (7 x 5 Gb/s NRZ-OOK) all-optical OFDM signal over ~2000-km dispersion-managed span without using tunable dispersion compensation and time gating. We achieve bit error ratio of 1.2x10−3 (7x10−3) for transmission over 1980-km (2310-km) all-EDFA amplified span consisting of standard single mode fiber (SSMF) and dispersion compensating fiber (DCF). We also study the nonlinear penalty impacting the all-optical OFDM transmission and discuss potential method for its mitigation.
© 2011 OSA
1. Introduction
E. Ip and J. M. Kahn, “Digital equalization of chromatic dispersion and polarization mode dispersion,” J. Lightwave Technol. 25(8), 2033–2043 (2007). [CrossRef]
I. Kang, M. Rasras, X. Liu, S. Chandrasekhar, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, “All-optical OFDM transmission of 7 x 5-Gb/s data over 84-km standard single-mode fiber without dispersion compensation and time gating using a photonic-integrated optical DFT device,” Opt. Express 19(10), 9111–9117 (2011). [CrossRef] [PubMed]
I. Kang, M. Rasras, X. Liu, S. Chandrasekhar, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, “All-optical OFDM transmission of 7 x 5-Gb/s data over 84-km standard single-mode fiber without dispersion compensation and time gating using a photonic-integrated optical DFT device,” Opt. Express 19(10), 9111–9117 (2011). [CrossRef] [PubMed]
2. All-optical OFDM experimental setup
I. Kang, M. Rasras, M. Dinu, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, A. Wong-Foy, S. S. Patel, C. R. Giles, N. Dutta, J. Jaques, and A. Piccirilli, ” All-optical byte recognition for 40-Gb/s phase-shift-keyed transmission using a planar-lightwave-circuit passive correlator,” IEEE Photon. Technol. Lett. 20, 1024–1026 (2008).
I. Kang, M. Rasras, X. Liu, S. Chandrasekhar, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, “All-optical OFDM transmission of 7 x 5-Gb/s data over 84-km standard single-mode fiber without dispersion compensation and time gating using a photonic-integrated optical DFT device,” Opt. Express 19(10), 9111–9117 (2011). [CrossRef] [PubMed]
3. Transmission results
S. Bigo, W. Idler, J.-C. Antona, G. Charlet, C. Simonneau, M. Gorleir, M. Molina, S. Borne, C. de Barros, P. Sillard, P. Tran, R. Dischler, W. Poehlmann, P. Nouchi, and Y. Frignac, “Transmission of 125 WDM channels at 42.7 Gbit/s (5 Tbits/s capacity) over 12x100 km of TeraLight ultra fiber,” in 27th European Conference on Optical Communication, 2001. ECOC '01 (2001), Vol. 6, postdeadline paper PD.M.1.1.
4. Nonlinear penalty
L. F. Mollenauer, A. Grant, X. Liu, X. Wei, C. Xie, and I. Kang, “Experimental test of dense wavelength-division multiplexing using novel, periodic-group-delay-complemented dispersion compensation and dispersion-managed solitons,” Opt. Lett. 28(21), 2043–2045 (2003). [CrossRef] [PubMed]
5. Summary
R. Nagarajan, D. Lambert, M. Kato, V. Lal, G. Goldfarb, J. Rahn, M. Kuntz, J. Pleumeekers, A. Dentai, H.-S. Tsai, R. Malendevich, M. Missey, K.-T. Wu, H. Sun, J. McNicol, J. Tang, J. Zhang, T. Butrie, A. Nilsson, M. Reffle, F. Kish, and D. Welch, “10 Channel, 100Gbit/s per channel, dual polarization, coherent QPSK, monolithic InP receiver photonic integrated circuit,” in Optical Fiber Communication Conference, OSA Technical Digest (CD) (Optical Society of America, 2011), paper OML7.
References and links
W. Shieh and I. Djordjevic, OFDM for Optical Communications (Academic, 2010). | |
E. Ip and J. M. Kahn, “Digital equalization of chromatic dispersion and polarization mode dispersion,” J. Lightwave Technol. 25(8), 2033–2043 (2007). [CrossRef] | |
H. Sanjoh, E. Yamada, and Y. Yoshikuni, “Optical orthogonal frequency division multiplexing using frequency/time domain filtering for high spectral efficency up to 1bit/s/Hz,” OFC 2002, ThD1 (2002). | |
A. Sano, H. Masuda, E. Yoshida, T. Kobayashi, E. Yamada, Y. Miyamoto, F. Inuzuka, Y. Hibino, Y. Takatori, K. Hagimoto, T. Yamada, and Y. Sakamaki, “30 x 100-Gb/s all-optical OFDM transmission over 1300 km SMF with 10 ROADM nodes,” in 2007 33rd European Conference and Exhibition of ECOC 2007 Optical Communication—Post-Deadline Papers (2008), paper PDS 1.7. | |
D. Hillerkuss, M. Winter, M. Teschke, A. Marculescu, J. Li, G. Sigurdsson, K. Worms, S. Ben Ezra, N. Narkiss, W. Freude, and J. Leuthold, “Simple all-optical FFT scheme enabling Tbit/s real-time signal processing,” Opt. Express 18(9), 9324–9340 (2010). [CrossRef] [PubMed] | |
K. Takiguchi, T. Kitoh, A. Mori, M. Ogima, and H. Takahashi, “Integrated-optic OFDM demultiplexer using slab star coupler-based optical DFT circuit,” in 2010 36th European Conference and Exhibition on Optical Communication (ECOC) (2010), paper PD1.4 | |
I. Kang, M. Rasras, X. Liu, S. Chandrasekhar, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, “All-optical OFDM transmission of 7 x 5-Gb/s data over 84-km standard single-mode fiber without dispersion compensation and time gating using a photonic-integrated optical DFT device,” Opt. Express 19(10), 9111–9117 (2011). [CrossRef] [PubMed] | |
I. Kang, M. Rasras, M. Dinu, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, A. Wong-Foy, S. S. Patel, C. R. Giles, N. Dutta, J. Jaques, and A. Piccirilli, ” All-optical byte recognition for 40-Gb/s phase-shift-keyed transmission using a planar-lightwave-circuit passive correlator,” IEEE Photon. Technol. Lett. 20, 1024–1026 (2008). | |
S. Bigo, W. Idler, J.-C. Antona, G. Charlet, C. Simonneau, M. Gorleir, M. Molina, S. Borne, C. de Barros, P. Sillard, P. Tran, R. Dischler, W. Poehlmann, P. Nouchi, and Y. Frignac, “Transmission of 125 WDM channels at 42.7 Gbit/s (5 Tbits/s capacity) over 12x100 km of TeraLight ultra fiber,” in 27th European Conference on Optical Communication, 2001. ECOC '01 (2001), Vol. 6, postdeadline paper PD.M.1.1. | |
B. Zhu, L. E. Nelson, L. Leng, S. Stulz, S. Knudsen, and D.Peckham,”1.6 Tb/s (40 x 42.7 Gb/s) transmission over 2000km of fiber with 100-km dispersion-managed spans,” in 27th European Conference on Optical Communication, 2001. ECOC '01 (2001), postdeadline paper PD. M. 1.8. | |
L. F. Mollenauer, A. Grant, X. Liu, X. Wei, C. Xie, and I. Kang, “Experimental test of dense wavelength-division multiplexing using novel, periodic-group-delay-complemented dispersion compensation and dispersion-managed solitons,” Opt. Lett. 28(21), 2043–2045 (2003). [CrossRef] [PubMed] | |
R. Nagarajan, D. Lambert, M. Kato, V. Lal, G. Goldfarb, J. Rahn, M. Kuntz, J. Pleumeekers, A. Dentai, H.-S. Tsai, R. Malendevich, M. Missey, K.-T. Wu, H. Sun, J. McNicol, J. Tang, J. Zhang, T. Butrie, A. Nilsson, M. Reffle, F. Kish, and D. Welch, “10 Channel, 100Gbit/s per channel, dual polarization, coherent QPSK, monolithic InP receiver photonic integrated circuit,” in Optical Fiber Communication Conference, OSA Technical Digest (CD) (Optical Society of America, 2011), paper OML7. |
OCIS Codes
(060.0060) Fiber optics and optical communications : Fiber optics and optical communications
(250.3140) Optoelectronics : Integrated optoelectronic circuits
ToC Category:
Transmission Systems and Network Elements
History
Original Manuscript: October 3, 2011
Revised Manuscript: December 3, 2011
Manuscript Accepted: December 5, 2011
Published: December 6, 2011
Virtual Issues
European Conference on Optical Communication 2011 (2011) Optics Express
Citation
I. Kang, S. Chadrasekhar, M. Rasras, X. Liu, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, "Long-haul transmission of 35-Gb/s all-optical OFDM signal without using tunable dispersion compensation and time gating," Opt. Express 19, B811-B816 (2011)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-19-26-B811
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References
- W. Shieh and I. Djordjevic, OFDM for Optical Communications (Academic, 2010).
- E. Ip and J. M. Kahn, “Digital equalization of chromatic dispersion and polarization mode dispersion,” J. Lightwave Technol.25(8), 2033–2043 (2007). [CrossRef]
- H. Sanjoh, E. Yamada, and Y. Yoshikuni, “Optical orthogonal frequency division multiplexing using frequency/time domain filtering for high spectral efficency up to 1bit/s/Hz,” OFC2002, ThD1 (2002).
- A. Sano, H. Masuda, E. Yoshida, T. Kobayashi, E. Yamada, Y. Miyamoto, F. Inuzuka, Y. Hibino, Y. Takatori, K. Hagimoto, T. Yamada, and Y. Sakamaki, “30 x 100-Gb/s all-optical OFDM transmission over 1300 km SMF with 10 ROADM nodes,” in 2007 33rd European Conference and Exhibition of ECOC 2007 Optical Communication—Post-Deadline Papers (2008), paper PDS 1.7.
- D. Hillerkuss, M. Winter, M. Teschke, A. Marculescu, J. Li, G. Sigurdsson, K. Worms, S. Ben Ezra, N. Narkiss, W. Freude, and J. Leuthold, “Simple all-optical FFT scheme enabling Tbit/s real-time signal processing,” Opt. Express18(9), 9324–9340 (2010). [CrossRef] [PubMed]
- K. Takiguchi, T. Kitoh, A. Mori, M. Ogima, and H. Takahashi, “Integrated-optic OFDM demultiplexer using slab star coupler-based optical DFT circuit,” in 2010 36th European Conference and Exhibition on Optical Communication (ECOC) (2010), paper PD1.4
- I. Kang, M. Rasras, X. Liu, S. Chandrasekhar, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, and J. Jaques, “All-optical OFDM transmission of 7 x 5-Gb/s data over 84-km standard single-mode fiber without dispersion compensation and time gating using a photonic-integrated optical DFT device,” Opt. Express19(10), 9111–9117 (2011). [CrossRef] [PubMed]
- I. Kang, M. Rasras, M. Dinu, M. Cappuzzo, L. T. Gomez, Y. F. Chen, L. Buhl, S. Cabot, A. Wong-Foy, S. S. Patel, C. R. Giles, N. Dutta, J. Jaques, and A. Piccirilli, ” All-optical byte recognition for 40-Gb/s phase-shift-keyed transmission using a planar-lightwave-circuit passive correlator,” IEEE Photon. Technol. Lett.20, 1024–1026 (2008).
- S. Bigo, W. Idler, J.-C. Antona, G. Charlet, C. Simonneau, M. Gorleir, M. Molina, S. Borne, C. de Barros, P. Sillard, P. Tran, R. Dischler, W. Poehlmann, P. Nouchi, and Y. Frignac, “Transmission of 125 WDM channels at 42.7 Gbit/s (5 Tbits/s capacity) over 12x100 km of TeraLight ultra fiber,” in 27th European Conference on Optical Communication, 2001. ECOC '01 (2001), Vol. 6, postdeadline paper PD.M.1.1.
- B. Zhu, L. E. Nelson, L. Leng, S. Stulz, S. Knudsen, and D.Peckham,”1.6 Tb/s (40 x 42.7 Gb/s) transmission over 2000km of fiber with 100-km dispersion-managed spans,” in 27th European Conference on Optical Communication, 2001. ECOC '01 (2001), postdeadline paper PD. M. 1.8.
- L. F. Mollenauer, A. Grant, X. Liu, X. Wei, C. Xie, and I. Kang, “Experimental test of dense wavelength-division multiplexing using novel, periodic-group-delay-complemented dispersion compensation and dispersion-managed solitons,” Opt. Lett.28(21), 2043–2045 (2003). [CrossRef] [PubMed]
- R. Nagarajan, D. Lambert, M. Kato, V. Lal, G. Goldfarb, J. Rahn, M. Kuntz, J. Pleumeekers, A. Dentai, H.-S. Tsai, R. Malendevich, M. Missey, K.-T. Wu, H. Sun, J. McNicol, J. Tang, J. Zhang, T. Butrie, A. Nilsson, M. Reffle, F. Kish, and D. Welch, “10 Channel, 100Gbit/s per channel, dual polarization, coherent QPSK, monolithic InP receiver photonic integrated circuit,” in Optical Fiber Communication Conference, OSA Technical Digest (CD) (Optical Society of America, 2011), paper OML7.
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