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March 27, 2026Nature Communications7 citationsOpen Access

High-speed graphene-based sub-terahertz receivers enabling wireless communications for 6G and beyond

KSK. P. SoundarapandianSCSebastián CastillaSKStefan M. Koepfli

Key Points

  • The aim is to develop advanced sub-terahertz receivers using graphene to improve wireless communication capabilities.
  • Demonstrated sub-THz receivers incorporating graphene for wireless applications.
  • Utilized a high-quality sub-THz cavity with a high-mobility graphene channel.
  • Evaluated the trade-off between bandwidth and responsivity in different device setups.
  • Achieved multigigabit-per-second data rates over a distance of ~ 3 m.
  • Maximum responsivity of 0.16 A/W observed in low-bandwidth devices (2 GHz bandwidth).
  • Bandwidth ranged from 40 GHz in low-responsivity devices to 2 GHz in high-responsivity devices.

Abstract

Wireless data traffic has grown at an unprecedented rate, creating an urgent need for innovative solutions to overcome current technological limitations. Sub-terahertz (sub-THz) carrier frequencies offer increased capacity and low attenuation for short-range wireless applications. Here, we demonstrate sub-THz receivers based on graphene, which offer several advantages over state-of-the-art sub-THz receivers, such as a direct detection scheme, passive operation, and compactness. We exploit multiple concepts incorporated into a single device, including a high-quality sub-THz cavity placed in the vicinity of a high-mobility graphene channel to overcome its intrinsically low absorption. The graphene receivers achieve a multigigabit-per-second data rate with a maximum distance of ~ 3 m from the transmitter. We demonstrate a trade-off between bandwidth and responsivity: a setup-limited 40 GHz bandwidth in low-responsivity devices, and a maximum responsivity of 0.16 A/W in devices with a 2 GHz bandwidth. Our findings enable applications such as chip-to-chip communication and close-proximity device-to-device communication. The authors showcase graphene based sub THz receivers that achieve multigigabit per second data rates over ~ 3 m and reveal a bandwidth-sensitivity trade off, advancing short range and chip to chip communication technologies.

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Cite This Study

Soundarapandian et al. (2026) studied this question.

synapsesocial.com/papers/69c6209315a0a509bde19225https://doi.org/10.1038/s41467-026-69186-6
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