Ong Kenny Y K, Abdul Rahim Aadhi, Chia Xavier X, Chen George F R, Xing Peng, Tan Dawn T H
Singapore University of Technology and Design, Singapore, Singapore.
A*STAR Institute of Microelectronics, Singapore, Singapore.
Nanophotonics. 2024 Mar 22;13(13):2367-2378. doi: 10.1515/nanoph-2023-0940. eCollection 2024 May.
Microresonator frequency comb-based high-speed data transmission provides a pathway towards augmented data capacity without increasing the number of laser sources. Their use with intensity-modulated direct detection modulation (IMDD) formats is especially pertinent in data center communications where minimizing cost, latency and complexity is paramount. This however implies that the same extent of digital signal processing techniques commonly used in coherent detection for the management of fiber impairments including chromatic dispersion are not available. With the proliferation of silicon photonics technologies in data center transceivers integrated dispersion compensation which can overcome fiber impairments would be of great merit. We demonstrate low power generation of the primary comb state in a silicon nitride microresonator and transmission of 25 Gb/s NRZ and 50 Gb/s PAM4 data over 20 km of single mode fiber. This represents the longest fiber reach demonstrated to date for the transmission of IMDD data using an integrated, microresonator frequency comb. An integrated, tunable grating device for dispersion compensation that reduces dispersion impairments after several fiber lengths generates significant improvements in the eye diagram, six orders of magnitude improvement in the bit-error rate and 14 dB improvement in the transmitter and dispersion eye closure quaternary values. Concurrently, doubling data transmission is demonstrated via polarization multiplexing a comb line and successful dispersion compensation of up to 20 km.
基于微谐振器频率梳的高速数据传输为在不增加激光源数量的情况下提高数据容量提供了一条途径。它们与强度调制直接检测调制(IMDD)格式一起使用,在数据中心通信中尤为重要,因为在数据中心通信中,将成本、延迟和复杂性降至最低至关重要。然而,这意味着在相干检测中通常用于管理包括色散在内的光纤损伤的数字信号处理技术的同等程度不可用。随着硅光子技术在数据中心收发器中的普及,能够克服光纤损伤的集成色散补偿将具有很大的优势。我们展示了在氮化硅微谐振器中低功率产生初级梳状态,并在20公里单模光纤上传输25 Gb/s NRZ和50 Gb/s PAM4数据。这代表了迄今为止使用集成微谐振器频率梳传输IMDD数据所展示的最长光纤传输距离。一种用于色散补偿的集成可调光栅装置,在经过几个光纤长度后减少色散损伤,显著改善了眼图,误码率提高了六个数量级,发射器和色散眼闭合四元值提高了14 dB。同时,通过对梳状线进行偏振复用,实现了数据传输翻倍,并成功补偿了高达20公里的色散。