120-Gb/s NRZ-DQPSK signal generation by a thin-lithium-niobate-substrate modulator
Author:
Affiliation:
1. New Generation Network Research Center, National Institute of Information and Communications Technology
2. New Technology Research Laboratory, Sumitomo Osaka Cement Co., Ltd.
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://www.jstage.jst.go.jp/article/elex/7/11/7_11_817/_pdf
Reference11 articles.
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2. [2] P. J. Winzer, A. H. Gnauck, G. Raybon, M. Schnecker, and P. J. Pupalaikis, “56-Gbaud PDM-QPSK: Coherent Detection and 2,500-km Transmission,” Proc. Euro. Conf. Opt. Commun. (ECOC09), Vienna, Austria, PD2.7, Sept. 2009.
3. [3] A. Sano, H. Masuda, T. Kobayashi, M. Fujiwara, K. Horikoshi, E. Yoshida, Y. Miyamoto, M. Matsu, M. Mizoguchi, H. Yamazaki, Y. Sakamaki, and H. Ishii, “69.1-Tb/s (432 x 171-Gb/s) C- and extended L-band transmission over 240km using PDM-16-QAM modulation and digital coherent detection,” Proc. Opt. Fiber Commun. Conf. (OFC'10), San Diego, USA, PDPB7, March 2010.
4. [4] X. Liu, S. Chandrasekhar, B. Zhu, P. J. Winzer, A. H. Gnauck, and D. W. Peckham, “Transmission of a 448-Gb/s reduced-guard-interval CO-OFDM signal with a 60-GHz optical bandwidth over 2000km of ULAF and five 80-GHz-grid ROADMs,” Proc. Opt. Fiber Commun. Conf. (OFC'10), San Diego, USA, PDPC2, March 2010.
5. [5] A. Kanno, T. Sakamoto, A. Chiba, T. Kawanishi, K. Higuma, M. Sudou, and J. Ichikawa, “166Gb/s PDM-NRZ-DPSK modulation using thin-LiNbO3-substrate modulator,” Proc. Opt. Fiber Commun. Conf. (OFC'10), San Diego, USA, JWA40, March 2010.
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