Opt Express. 2023 Feb 27;31(5):7259-7264. doi: 10.1364/OE.474209.
High bitrate mid-infrared links using simple (NRZ) and multi-level (PAM-4) data coding schemes have been realized in the 8 µm to 14 µm atmospheric transparency window. The free space optics system is composed of unipolar quantum optoelectronic devices, namely a continuous wave quantum cascade laser, an external Stark-effect modulator and a quantum cascade detector, all operating at room-temperature. Pre- and post-processing are implemented to get enhanced bitrates, especially for PAM-4 where inter-symbol interference and noise are particularly detrimental to symbol demodulation. By exploiting these equalization procedures, our system, with a full frequency cutoff of 2 GHz, has reached transmission bitrates of 12 Gbit/s NRZ and 11 Gbit/s PAM-4 fulfilling the 6.25 % overhead hard-decision forward error correction threshold, limited only by the low signal-to-noise ratio of our detector.
采用简单(NRZ)和多电平(PAM-4)数据编码方案的高比特率中红外链路已在 8μm 至 14μm 的大气透明窗口中实现。自由空间光学系统由单极量子光电设备组成,即连续波量子级联激光器、外斯塔克效应调制器和量子级联探测器,所有这些都在室温下运行。进行了预和后处理以提高比特率,特别是对于 PAM-4,其中符号间干扰和噪声对符号解调特别不利。通过利用这些均衡程序,我们的系统具有 2GHz 的全频截止频率,已达到 12Gbit/s NRZ 和 11Gbit/s PAM-4 的传输比特率,满足 6.25%开销硬判决前向纠错阈值,仅受限于我们探测器的低信噪比。