Jia Shi, Lo Mu-Chieh, Zhang Lu, Ozolins Oskars, Udalcovs Aleksejs, Kong Deming, Pang Xiaodan, Guzman Robinson, Yu Xianbin, Xiao Shilin, Popov Sergei, Chen Jiajia, Carpintero Guillermo, Morioka Toshio, Hu Hao, Oxenløwe Leif K
DTU Fotonik, Technical University of Denmark, DK-2800, Kgs, Lyngby, Denmark.
Universidad Carlos III de Madrid, 28911, Leganés, Madrid, Spain.
Nat Commun. 2022 Mar 16;13(1):1388. doi: 10.1038/s41467-022-29049-2.
Photonic generation of Terahertz (THz) carriers displays high potential for THz communications with a large tunable range and high modulation bandwidth. While many photonics-based THz generations have recently been demonstrated with discrete bulky components, their practical applications are significantly hindered by the large footprint and high energy consumption. Herein, we present an injection-locked heterodyne source based on generic foundry-fabricated photonic integrated circuits (PIC) attached to a uni-traveling carrier photodiode generating high-purity THz carriers. The generated THz carrier is tunable within the range of 0-1.4 THz, determined by the wavelength spacing between the two monolithically integrated distributed feedback (DFB) lasers. This scheme generates and transmits a 131 Gbits net rate signal over a 10.7-m distance with -24 dBm emitted power at 0.4 THz. This monolithic dual-DFB PIC-based THz generation approach is a significant step towards fully integrated, cost-effective, and energy-efficient THz transmitters.
太赫兹(THz)载波的光子产生在具有大可调谐范围和高调制带宽的太赫兹通信中显示出巨大潜力。虽然最近已经用离散的大型组件展示了许多基于光子学的太赫兹产生方法,但它们的实际应用受到大尺寸和高能耗的显著阻碍。在此,我们提出一种基于通用代工制造的光子集成电路(PIC)的注入锁定外差源,该电路连接到一个单载流子光电二极管,可产生高纯度太赫兹载波。所产生的太赫兹载波在0 - 1.4太赫兹范围内可调谐,这由两个单片集成分布反馈(DFB)激光器之间的波长间距决定。该方案在10.7米的距离上以0.4太赫兹的发射功率-24 dBm产生并传输131 Gbits的净速率信号。这种基于单片双DFB PIC的太赫兹产生方法是朝着完全集成、经济高效且节能的太赫兹发射器迈出的重要一步。