Title :
Dual-Carrier Dual-Polarization IQ Modulator Using a Complementary Frequency Shifter
Author :
Yamazaki, Hiroshi ; Saida, Takashi ; Goh, Takashi ; Mino, Shinji ; Nagatani, Munehiko ; Nosaka, Hideyuki ; Murata, Kentaro
Author_Institution :
NTT Photonics Labs., NTT Corp., Kanagawa, Japan
Abstract :
We discuss the detailed characteristics of a dual-carrier dual-polarization (DP) in-phase-and-quadrature (IQ) modulator. As the dual-carrier generator, we used a complementary frequency shifter (CFS), which generates two frequency-spacing-locked optical subcarriers and outputs each of them from different output ports without any optical demultiplexers. We fabricated the modulator, which integrates a CFS, a quad-parallel IQ modulator, and a polarization-multiplexing circuit, with a hybrid configuration of silica planar lightwave circuits and a LiNbO3 chip. With the fabricated modulator, we demonstrated that the CFS enables us to flexibility change the relative and absolute optical frequencies of the subcarriers with a high isolation ratio of about 40 dB. We generated a 400-Gb/s dual-carrier DP 16-level quadrature amplitude modulation (16QAM) signal by driving the modulator with high-speed digital-to-analog converters.
Keywords :
OFDM modulation; electro-optical modulation; lithium compounds; optical communication equipment; optical fabrication; optical fibre communication; optical fibre polarisation; optical planar waveguides; quadrature amplitude modulation; silicon compounds; 16QAM; LiNbO3; SiO2; bit rate 400 Gbit/s; complementary frequency shifter; dual-carrier DP 16-level quadrature amplitude modulation; dual-carrier dual-polarization IQ modulator; frequency-spacing-locked optical subcarriers; high-speed digital-to-analog converters; in-phase-and-quadrature modulator; isolation ratio; polarization multiplexing; quadparallel IQ modulator; silica planar lightwave circuits; Integrated optoelectronics; multicarrier transmission; optical modulation; optical planar waveguides; orthogonal frequency-division multiplexing (OFDM); quadrature amplitude modulation (QAM); superchannel;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2013.2263120