光学
相移键控
物理
键控
强度调制
调制(音乐)
正交调幅
副载波
调幅键控
误码率
材料科学
相位调制
电信
相位噪声
正交频分复用
计算机科学
频道(广播)
声学
作者
Yang Hong,Kyle R. H. Bottrill,Natsupa Taengnoi,Naresh Kumar Thipparapu,Yu Wang,J. K. Sahu,David J. Richardson,Periklis Petropoulos
出处
期刊:Applied Optics
[The Optical Society]
日期:2021-04-28
卷期号:60 (15): 4383-4383
被引量:19
摘要
The recent emergence of efficient O-band amplification technologies has enabled the consideration of O-band transmission beyond short reach. Despite the O-band being a low chromatic dispersion (CD) window, the impact of CD will become increasingly significant when extending the reach of direct-detection (DD) systems. In this work, we first numerically investigate the 3-dB bandwidth of single-mode fibers (SMF) and the CD-restricted transmission reach in intensity-modulation DD systems, confirming the significant difference between low- and high-dispersion O-band wavelengths. We then carry out experimental transmission studies over SMF for distances of up to 70 km at two different wavelengths, the low-dispersion 1320 nm and the more dispersive 1360 nm, enabled by the use of an O-band bismuth-doped fiber amplifier as a preamplifier at the receiver. We compare three 50-Gb/s optical DD formats, namely, Nyquist on-off keying (OOK), Nyquist 4-ary pulse amplitude modulation (PAM4) and Kramers–Kronig detection-assisted single-sideband quadrature phase shift keying (KK-QPSK) half-cycle subcarrier modulation. Our results show that at both wavelengths, OOK and QPSK exhibit better bit error rate performance than PAM4. When transmitting over 70-km of SMF at the less dispersive wavelength of 1320 nm, 50-Gb/s OOK modulation offers more than 1.5-dB optical power sensitivity improvement at the photodiode (PD) compared to 50-Gb/s QPSK. Conversely, at 1360 nm, the required optical power to the PD can be reduced by more than 3 dB by using QPSK instead of OOK.
科研通智能强力驱动
Strongly Powered by AbleSci AI