4.7 Article

Flexible Millimeter-Wave Carrier Generation up to the Sub-THz With Silicon Photonics Filters

Journal

JOURNAL OF LIGHTWAVE TECHNOLOGY
Volume 39, Issue 24, Pages 7689-7697

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JLT.2021.3113896

Keywords

Optical sensors; Radio frequency; Optical waveguides; Integrated optics; Tuning; Optical device fabrication; Optical resonators; Silicon photonics; microwave photonics; millimeter-wave generation; waveguide Bragg gratings; optical filters

Funding

  1. Italian Ministry of Defense

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This paper reports on the characterization of a photonic integrated circuit (PIC) for generating RF carriers in the millimeter-wave to sub-THz region. Experimental results demonstrate effective selection of frequencies and noise reduction, offering new insights for optimizing future wireless communication and sensing network systems.
We report on the characterization of a photonic integrated circuit (PIC) for the generation of a RF carrier in the millimeter-wave band up to the sub-THz region. The circuit is implemented in silicon waveguides through a standard multi project wafer service, and exploits an innovative filtering technique for effectively selecting two tones out of an input optical frequency comb (OFC) driven by a local oscillator at a sub-multiple frequency of the system output RF signal. Experimental results confirm a large suppression ratio of RF spurious tones up to more than 30 dB for generated carrier frequencies ranging from 20 GHz to 126 GHz with input OFC frequency spacing between 10 GHz and 20 GHz. Additionally, the unfiltered input OFC tones are recovered in the scheme with negligible loss, enabling efficient comb reuse for minimizing optical and RF equipment in future wireless communications and sensing networks systems. Design strategies for further improving the circuit performances are finally presented.

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