Abstract
AbstractMicrowave photonics (MWP) has unlocked a new paradigm for Radio Frequency (RF) signal processing by harnessing the inherent broadband and tunable nature of photonic components. Despite numerous efforts made to implement integrated MWP filters, a key RF processing functionality, it remains a long-standing challenge to achieve a fully integrated photonic circuit that can merge the megahertz-level spectral resolution required for RF applications with key electro-optic components. Here, we overcome this challenge by introducing a compact 5 mm × 5 mm chip-scale MWP filter with active E-O components, demonstrating 37 MHz spectral resolution. We achieved this device by heterogeneously integrating chalcogenide waveguides, which provide Brillouin gain, in a complementary metal-oxide-semiconductor (CMOS) foundry-manufactured silicon photonic chip containing integrated modulators and photodetectors. This work paves the way towards a new generation of compact, high-resolution RF photonic filters with wideband frequency tunability demanded by future applications, such as air and spaceborne RF communication payloads.
Funder
Department of Education and Training | Australian Research Council
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference60 articles.
1. Liu, Y., Choudhary, A., Marpaung, D. & Eggleton, B. J. Integrated microwave photonic filters. Adv. Opt. Photonics 12, 485 (2020).
2. Marpaung, D., Yao, J. & Capmany, J. Integrated microwave photonics. Nat. Photonics 13, 80–90 (2019).
3. Filtering Out Interference for Next-Generation Wideband Arrays, DARPA, https://www.darpa.mil/news-events/2021-06-10 (2021)
4. Mahon, S. The 5G Effect on RF Filter Technologies. IEEE Trans. Semicond. Manuf. 30, 494–499 (2017).
5. Yang, Y., Gao, L. & Gong, S. X-band miniature filters using lithium niobate acoustic resonators and bandwidth widening technique. IEEE Trans. Microw. Theory Tech. 69, 1602–1610 (2021).
Cited by
10 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献