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40Gbit/s coherent optical receiver using a Costas loop |
Optics Express, Vol. 20, Issue 26, pp. B197-B203 (2012)
http://dx.doi.org/10.1364/OE.20.00B197
Acrobat PDF (1424 KB)
Abstract
A highly integrated 40Gbit/s coherent optical receiver is reported using a Costas loop as a homodyne optical phase locked loop (OPLL). A photonic IC, an electrical IC, and a hybrid loop filter are characterized, and the feedback loop system is fully analyzed to build a stable homodyne OPLL. All components are integrated on a single substrate within the compact size of 10 × 10mm2, and a 1.1GHz loop bandwidth and a 120psloop delay are achieved. The binary phase-shift keying receiver exhibits error-free (BER<10−12) up to 35Gbit/s and BER<10−7 for 40Gbit/s with no latency, and consumes less than 3W power.
© 2012 OSA
1. Introduction
G. Li, “Recent advances in coherent optical communication,” Adv. Opt. Photon. 1(2), 279–307 (2009). [CrossRef]
White paper - Driving 100G to the metro: http://www.multi-phy.com/en-us/home.aspx.
M. Grant, W. Michie, and M. Fletcher, “The performance of optical phase locked loops in the presence of nonnegligible loop propagation delay,” J. Lightwave Technol. 5(4), 592–597 (1987). [CrossRef]
S. Norimatsu and K. Iwashita, “PLL Propagation delay-time influence on linewidthrequirements of optical PSK homodyne detection,” J. Lightwave Technol. 9(10), 1367–1375 (1991). [CrossRef]
S. Ristic, A. Bhardwaj, M. Rodwell, L. Coldren, and L. Johansson, “An optical phase-locked loop photonic integrated circuit,” J. Lightwave Technol. 28(4), 526–538 (2010). [CrossRef]
R. J. Steed, F. Pozzi, M. J. Fice, C. C. Renaud, D. C. Rogers, I. F. Lealman, D. G. Moodie, P. J. Cannard, C. Lynch, L. Johnston, M. J. Robertson, R. Cronin, L. Pavlovic, L. Naglic, M. Vidmar, and A. J. Seeds, “Monolithically integrated heterodyne optical phase-lock loop with RF XOR phase detector,” Opt. Express 19(21), 20048–20053 (2011). [CrossRef] [PubMed]
M. Lu, H. Park, E. Bloch, A. Sivananthan, A. Bhardwaj, Z. Griffith, L. A. Johansson, M. J. Rodwell, and L. A. Coldren, “Highly integrated optical heterodyne phase-locked loop with phase/frequency detection,” Opt. Express 20(9), 9736–9741 (2012). [CrossRef] [PubMed]
H. Philipp, A. Scholtz, E. Bonek, and W. Leeb, “Costas loop experiments for a 10.6 um communications receiver,” IEEE Trans. Commun. 31(8), 1000–1002 (1983). [CrossRef]
S. Norimatsu, K. Iwashita, and K. Sato, “PSK optical homodyne detection using external cavity laser diodes in Costas loop,” IEEE Photon. Technol. Lett. 2(5), 374–376 (1990). [CrossRef]
L. Kazovsky, “Decision-driven phase-locked loop for optical homodyne receivers: performance analysis and laser linewidth requirements,” J. Lightwave Technol. 3(6), 1238–1247 (1985). [CrossRef]
V. Ferrero and S. Camatel, “Optical phase locking techniques: an overview and a novel method based on single side sub-carrier modulation,” Opt. Express 16(2), 818–828 (2008). [CrossRef] [PubMed]
2. A homodyne OPLL and loop analysis
2.1 Photonic integrated circuit (PIC)
2.2 Electrical integrated circuit (EIC)
D. G. Messerschmitt, “Frequency detectors for PLL acquisition in timing and carrier recovery,” IEEE Trans. Commun. 27(9), 1288–1295 (1979). [CrossRef]
2.3 Hybrid loop filter
2.4 Feedback loop analysis
J. Crossley and E. Alon, “An energy-efficient Digital phase-locked loop with linear phase control,” (2010), http://bwrc.eecs.berkeley.edu/php/pubs/pubs.php/1294.html.
3. Implementation and experiment results
3.1 Integration for the OPLL
3.2 Homodyne OPLL experiments
3.3 BPSK receiver experiments
4. Conclusion
Acknowledgment
References and links
K. Kikuchi, “Coherent optical communications: historical perspectives and future directions,” in High spectral Density Optical Communication Technology, (Springer, 2010), Chap. 2. | |
G. Li, “Recent advances in coherent optical communication,” Adv. Opt. Photon. 1(2), 279–307 (2009). [CrossRef] | |
K. Kikuchi, M. Fukase, and S. Kim, “Electronic post-compensation for nonlinear phase noise in a 1000-km 20-Gbit/s optical QPSK transmission system using the homodyne receiver with digital signal processing,” OFC’2007 conference, OTuA2 (2007). | |
White paper - Driving 100G to the metro: http://www.multi-phy.com/en-us/home.aspx. | |
T. Sakamoto, A. Chiba, A. Kanno, I. Morohashi, and T. Kawanishi, “Real-time homodyne reception of 40-Gb/s BPSK signal by digital optical phase-locked loop,”ECOC’2010 conference, P3.12 (2010). | |
M. Grant, W. Michie, and M. Fletcher, “The performance of optical phase locked loops in the presence of nonnegligible loop propagation delay,” J. Lightwave Technol. 5(4), 592–597 (1987). [CrossRef] | |
T. Hodgkinson, “Costas loop analysis for coherent optical receivers,” Electron. Lett. 22(7), 394–396 (1986). [CrossRef] | |
L. Kazovsky, “Balanced phase-locked loops for optical homodyne receivers: performance analysis, design considerations, and laser linewidth requirements,” J. Lightwave Technol. 4(2), 182–195 (1986). [CrossRef] | |
S. Norimatsu and K. Iwashita, “PLL Propagation delay-time influence on linewidthrequirements of optical PSK homodyne detection,” J. Lightwave Technol. 9(10), 1367–1375 (1991). [CrossRef] | |
S. Ristic, A. Bhardwaj, M. Rodwell, L. Coldren, and L. Johansson, “An optical phase-locked loop photonic integrated circuit,” J. Lightwave Technol. 28(4), 526–538 (2010). [CrossRef] | |
R. J. Steed, F. Pozzi, M. J. Fice, C. C. Renaud, D. C. Rogers, I. F. Lealman, D. G. Moodie, P. J. Cannard, C. Lynch, L. Johnston, M. J. Robertson, R. Cronin, L. Pavlovic, L. Naglic, M. Vidmar, and A. J. Seeds, “Monolithically integrated heterodyne optical phase-lock loop with RF XOR phase detector,” Opt. Express 19(21), 20048–20053 (2011). [CrossRef] [PubMed] | |
M. Lu, H. Park, E. Bloch, A. Sivananthan, A. Bhardwaj, Z. Griffith, L. A. Johansson, M. J. Rodwell, and L. A. Coldren, “Highly integrated optical heterodyne phase-locked loop with phase/frequency detection,” Opt. Express 20(9), 9736–9741 (2012). [CrossRef] [PubMed] | |
H. Philipp, A. Scholtz, E. Bonek, and W. Leeb, “Costas loop experiments for a 10.6 um communications receiver,” IEEE Trans. Commun. 31(8), 1000–1002 (1983). [CrossRef] | |
S. Norimatsu, K. Iwashita, and K. Sato, “PSK optical homodyne detection using external cavity laser diodes in Costas loop,” IEEE Photon. Technol. Lett. 2(5), 374–376 (1990). [CrossRef] | |
L. Kazovsky, “Decision-driven phase-locked loop for optical homodyne receivers: performance analysis and laser linewidth requirements,” J. Lightwave Technol. 3(6), 1238–1247 (1985). [CrossRef] | |
V. Ferrero and S. Camatel, “Optical phase locking techniques: an overview and a novel method based on single side sub-carrier modulation,” Opt. Express 16(2), 818–828 (2008). [CrossRef] [PubMed] | |
H. Park, M. Lu, E. Bloch, T. Reed, Z. Griffith, L. Johansson, L. Coldren, and M. Rodwell, “40Gbit/s coherent optical receiver using a Costas loop,” ECOC’2012 conference, PD Th.3.A, (2012). | |
M. Lu, H. Park, E. Bloch, A. Sivananthan, J. Parker, Z. Griffith, L. A. Johansson, M. Rodwell, and L. Coldren, “A photonic integrated circuit for a 40 Gbaud/s homodyne receiver using an optical Costas loop,” IPC’2012 conference, PD-4, (2012). | |
M. Urteaga, R. Pierson, P. Rowell, M. Choe, D. Mensa, and B. Brar, “Advanced InP DHBT process for high speed LSI circuits,” IPRM 2008. 20th International conference, 1–5 (2008). | |
D. G. Messerschmitt, “Frequency detectors for PLL acquisition in timing and carrier recovery,” IEEE Trans. Commun. 27(9), 1288–1295 (1979). [CrossRef] | |
E. Bloch, H. Park, M. Lu, T. Reed, Z. Griffith, L. Johansson, L. Coldren, D. Ritter, and M. Rodwell, “A 1-20 GHz all-Digital InP HBT optical wavelength synthesis IC,” IEEE Trans. Microw. Theory Tech. (to be published). | |
R. C. Walker, “Designing bang-bang PLLs for clock and data recovery in serial data transmission systems,” in phase-locking in high-performance systems, B. Razavi, Ed. New York: IEEE Press,34–45 (2003). | |
J. Crossley and E. Alon, “An energy-efficient Digital phase-locked loop with linear phase control,” (2010), http://bwrc.eecs.berkeley.edu/php/pubs/pubs.php/1294.html. |
OCIS Codes
(060.1660) Fiber optics and optical communications : Coherent communications
(250.5300) Optoelectronics : Photonic integrated circuits
(350.4010) Other areas of optics : Microwaves
ToC Category:
Subsystems for Optical Networks
History
Original Manuscript: October 16, 2012
Manuscript Accepted: October 29, 2012
Published: November 28, 2012
Virtual Issues
European Conference on Optical Communication 2012 (2012) Optics Express
Citation
Hyun-chul Park, Mingzhi Lu, Eli Bloch, Thomas Reed, Zach Griffith, Leif Johansson, Larry Coldren, and Mark Rodwell, "40Gbit/s coherent optical receiver using a Costas loop," Opt. Express 20, B197-B203 (2012)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-20-26-B197
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References
- K. Kikuchi, “Coherent optical communications: historical perspectives and future directions,” in High spectral Density Optical Communication Technology, (Springer, 2010), Chap. 2.
- G. Li, “Recent advances in coherent optical communication,” Adv. Opt. Photon.1(2), 279–307 (2009). [CrossRef]
- K. Kikuchi, M. Fukase, and S. Kim, “Electronic post-compensation for nonlinear phase noise in a 1000-km 20-Gbit/s optical QPSK transmission system using the homodyne receiver with digital signal processing,” OFC’2007 conference, OTuA2 (2007).
- White paper - Driving 100G to the metro: http://www.multi-phy.com/en-us/home.aspx .
- T. Sakamoto, A. Chiba, A. Kanno, I. Morohashi, and T. Kawanishi, “Real-time homodyne reception of 40-Gb/s BPSK signal by digital optical phase-locked loop,”ECOC’2010 conference, P3.12 (2010).
- M. Grant, W. Michie, and M. Fletcher, “The performance of optical phase locked loops in the presence of nonnegligible loop propagation delay,” J. Lightwave Technol.5(4), 592–597 (1987). [CrossRef]
- T. Hodgkinson, “Costas loop analysis for coherent optical receivers,” Electron. Lett.22(7), 394–396 (1986). [CrossRef]
- L. Kazovsky, “Balanced phase-locked loops for optical homodyne receivers: performance analysis, design considerations, and laser linewidth requirements,” J. Lightwave Technol.4(2), 182–195 (1986). [CrossRef]
- S. Norimatsu and K. Iwashita, “PLL Propagation delay-time influence on linewidthrequirements of optical PSK homodyne detection,” J. Lightwave Technol.9(10), 1367–1375 (1991). [CrossRef]
- S. Ristic, A. Bhardwaj, M. Rodwell, L. Coldren, and L. Johansson, “An optical phase-locked loop photonic integrated circuit,” J. Lightwave Technol.28(4), 526–538 (2010). [CrossRef]
- R. J. Steed, F. Pozzi, M. J. Fice, C. C. Renaud, D. C. Rogers, I. F. Lealman, D. G. Moodie, P. J. Cannard, C. Lynch, L. Johnston, M. J. Robertson, R. Cronin, L. Pavlovic, L. Naglic, M. Vidmar, and A. J. Seeds, “Monolithically integrated heterodyne optical phase-lock loop with RF XOR phase detector,” Opt. Express19(21), 20048–20053 (2011). [CrossRef] [PubMed]
- M. Lu, H. Park, E. Bloch, A. Sivananthan, A. Bhardwaj, Z. Griffith, L. A. Johansson, M. J. Rodwell, and L. A. Coldren, “Highly integrated optical heterodyne phase-locked loop with phase/frequency detection,” Opt. Express20(9), 9736–9741 (2012). [CrossRef] [PubMed]
- H. Philipp, A. Scholtz, E. Bonek, and W. Leeb, “Costas loop experiments for a 10.6 um communications receiver,” IEEE Trans. Commun.31(8), 1000–1002 (1983). [CrossRef]
- S. Norimatsu, K. Iwashita, and K. Sato, “PSK optical homodyne detection using external cavity laser diodes in Costas loop,” IEEE Photon. Technol. Lett.2(5), 374–376 (1990). [CrossRef]
- L. Kazovsky, “Decision-driven phase-locked loop for optical homodyne receivers: performance analysis and laser linewidth requirements,” J. Lightwave Technol.3(6), 1238–1247 (1985). [CrossRef]
- V. Ferrero and S. Camatel, “Optical phase locking techniques: an overview and a novel method based on single side sub-carrier modulation,” Opt. Express16(2), 818–828 (2008). [CrossRef] [PubMed]
- H. Park, M. Lu, E. Bloch, T. Reed, Z. Griffith, L. Johansson, L. Coldren, and M. Rodwell, “40Gbit/s coherent optical receiver using a Costas loop,” ECOC’2012 conference, PD Th.3.A, (2012).
- M. Lu, H. Park, E. Bloch, A. Sivananthan, J. Parker, Z. Griffith, L. A. Johansson, M. Rodwell, and L. Coldren, “A photonic integrated circuit for a 40 Gbaud/s homodyne receiver using an optical Costas loop,” IPC’2012 conference, PD-4, (2012).
- M. Urteaga, R. Pierson, P. Rowell, M. Choe, D. Mensa, and B. Brar, “Advanced InP DHBT process for high speed LSI circuits,” IPRM 2008. 20th International conference, 1–5 (2008).
- D. G. Messerschmitt, “Frequency detectors for PLL acquisition in timing and carrier recovery,” IEEE Trans. Commun.27(9), 1288–1295 (1979). [CrossRef]
- E. Bloch, H. Park, M. Lu, T. Reed, Z. Griffith, L. Johansson, L. Coldren, D. Ritter, and M. Rodwell, “A 1-20 GHz all-Digital InP HBT optical wavelength synthesis IC,” IEEE Trans. Microw. Theory Tech. (to be published).
- R. C. Walker, “Designing bang-bang PLLs for clock and data recovery in serial data transmission systems,” in phase-locking in high-performance systems, B. Razavi, Ed. New York: IEEE Press,34–45 (2003).
- J. Crossley and E. Alon, “An energy-efficient Digital phase-locked loop with linear phase control,” (2010), http://bwrc.eecs.berkeley.edu/php/pubs/pubs.php/1294.html .
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