Narrowband microwave-photonic notch filters using Brillouin-based signal transduction in silicon

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作者
Shai Gertler
Nils T. Otterstrom
Michael Gehl
Andrew L. Starbuck
Christina M. Dallo
Andrew T. Pomerene
Douglas C. Trotter
Anthony L. Lentine
Peter T. Rakich
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[1] Yale University,Department of Applied Physics
[2] Sandia National Laboratories,Photonic and Phononic Microsystems
来源
Nature Communications | / 13卷
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摘要
The growing demand for bandwidth makes photonic systems a leading candidate for future telecommunication and radar technologies. Integrated photonic systems offer ultra-wideband performance within a small footprint, which can naturally interface with fiber-optic networks for signal transmission. However, it remains challenging to realize narrowband (∼MHz) filters needed for high-performance communications systems using integrated photonics. In this paper, we demonstrate all-silicon microwave-photonic notch filters with 50× higher spectral resolution than previously realized in silicon photonics. This enhanced performance is achieved by utilizing optomechanical interactions to access long-lived phonons, greatly extending available coherence times in silicon. We use a multi-port Brillouin-based optomechanical system to demonstrate ultra-narrowband (2.7 MHz) notch filters with high rejection (57 dB) and frequency tunability over a wide spectral band (6 GHz) within a microwave-photonic link. We accomplish this with an all-silicon waveguide system, using CMOS-compatible fabrication techniques.
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