Comparing the performance of microcomb based RF photonic transversal signal processors based on discrete components versus integration

Author:

Moss David1ORCID

Affiliation:

1. Swinburne University of Technology

Abstract

Abstract RF photonic transversal signal processors, which combine reconfigurable electrical digital signal processing and high-bandwidth photonic processing, provide a powerful solution for achieving adaptive high-speed information processing. Recent progress in optical microcomb technology provides compelling multi-wavelength sources with compact footprint, yielding a variety of microcomb-based RF photonic transversal signal processors implemented by either discrete or integrated components. Although operating based on the same principle, processors in these two forms exhibit distinct performance. This letter presents a comparative investigation into their performance. First, we compare the performance of state-of-the-art processors, focusing on the processing accuracy. Next, we analyze various factors that contribute to the performance differences, including tap number and imperfect response of experimental components. Finally, we discuss the potential for future improvement. These results provide a comprehensive comparison of microcomb-based RF photonic transversal signal processors implemented using discrete and integrated components and provide insights for their future development.

Publisher

Research Square Platform LLC

Reference172 articles.

1. Applications of optical microcombs;Sun Y;Advances in Optics and Photonics,2023

2. “11 TOPS photonic convolutional accelerator for optical neural networks;Xu X;Nature

3. Weiwei Han, Zhihui Liu, Yifu Xu, Mengxi Tan, Yuhua Li, Xiaotian Zhu, Yanni Ou, Feifei Yin, Roberto Morandotti, Brent E. Little, Sai Tak Chu, Xingyuan Xu, David J. Moss, and Kun Xu, “Dual-polarization RF Channelizer Based on Microcombs”, Journal of Lightwave Technology (2023).

4. Photonic signal processor for real-time video image processing at 17 Tb/s based on a Kerr microcomb”;Tan Mengxi;Nature Communications Engineering,2023

5. Performance analysis of microwave photonic spectral filters based on optical microcombs”;Li Yang;Optics and Lasers in Engineering,2023

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