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March 12, 2026Nature Communications3 citationsOpen Access

Integrated photonic ultrawideband real-time spectrum sensing for 6G wireless networks

YTYuansheng TaoHFHanke FengYFY. Fang

Key Points

  • The research aims to develop a real-time spectrum sensing system that addresses challenges in ultrawide measurement range and low latency for 6G networks.
  • Developed a thin-film lithium niobate platform for integrated sensing.
  • Integrated a broadband electro-optic modulator for signal loading.
  • Employed an electro-optic microring filter bank for frequency-to-time mapping.
  • Validated the system through an adaptive radar demonstration in ISAC applications.
  • Achieved an analysis bandwidth of 57.5 GHz with measurable frequencies up to 120 GHz.
  • Maintained low latency of less than 110 ns.
  • Successfully demonstrated high-quality ranging under communication interferences.

Abstract

Real-time spectrum sensing (RT-SS) is an essential technology for the upcoming sixth-generation (6G) networks, enabling dynamic spectrum management to support emerging integrated sensing and communication (ISAC) applications. However, conventional electronic and photonic RT-SS solutions face challenges in achieving ultrawide measurement range, compact size, and low latency, simultaneously. Here, we demonstrate an integrated photonic RT-SS system covering microwave to sub-terahertz bands on a thin-film lithium niobate (TFLN) platform. The TFLN chip integrates a broadband electro-optic (EO) modulator for signal loading, an EO microring filter bank for high-speed parallel frequency-to-time mapping, and an EO comb for channel referencing. The system achieves an analysis bandwidth of 57.5 GHz and measurable frequency up to 120 GHz, at a low latency of < 110 ns. The RT-SS system is further validated through a proof-of-concept ISAC demonstration, where a radar adaptively accesses underutilized spectral regions for high-quality ranging under dynamic communication interferences. Our work provides a compact solution for high-efficiency spectrum management in 6G ISAC networks.

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Cite This Study

Tao et al. (2026) studied this question.

synapsesocial.com/papers/69b2577096eeacc4fcec6156https://doi.org/10.1038/s41467-026-70389-0
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