Xu Jing, Kong Meiwei, Lin Aobo, Song Yuhang, Han Jun, Xu Zhiwei, Wu Bo, Gao Shiming, Deng Ning
Opt Lett. 2017 May 1;42(9):1664-1667. doi: 10.1364/OL.42.001664.
It is widely known that a diode-pumped solid-state laser (DPSSL) has very limited modulation bandwidth. Recently, we directed our attention toward the opportunities for directly modulating a DPSSL to generate high-speed green-light signals, with high power and superior beam quality, which are highly desirable in underwater wireless optical communication. The constraint imposed by the limited modulation bandwidth of a DPSSL is circumvented with the strategy of orthogonal frequency-division multiplexing and power loading. With a compact DPSSL dismantled from a low-cost laser pointer, we achieve net bit rates of 108.55 Mb/s for the 64 quadrature amplitude modulation (QAM) signal at a bit error rate (BER) of 6.42×10 and 89.55 Mb/s for the 32 QAM signal at a BER of 4.81×10, respectively, over a 2 m underwater channel. When the underwater transmission distance is increased to 6 m, the BERs are still below the forward error correction (FEC) limit of 3.8×10.
众所周知,二极管泵浦固态激光器(DPSSL)的调制带宽非常有限。最近,我们将注意力转向直接调制DPSSL以生成高速绿光信号的机会,该信号具有高功率和优异的光束质量,这在水下无线光通信中是非常理想的。通过正交频分复用和功率加载策略规避了DPSSL有限调制带宽所带来的限制。利用从低成本激光指示器拆卸下来的紧凑型DPSSL,在2米水下信道上,对于64正交幅度调制(QAM)信号,在误码率(BER)为6.42×10时,实现了108.55 Mb/s的净比特率;对于32 QAM信号,在误码率为4.81×10时,实现了89.55 Mb/s的净比特率。当水下传输距离增加到6米时,误码率仍低于前向纠错(FEC)极限3.8×10。