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September 23, 2025Electronics2 citationsOpen Access

Physical-Layer Encryption for Terahertz Wireless Communication via Logical AND Operation of Dual Beams

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YKYoshiki KamiuraSIShinji IwamotoYMYuya Mikami

Key Points

  • Successful decryption is achieved at data rates up to 1.5 Gbit/s, with bit error rates below the threshold.
  • The experimental setup uses uni-traveling carrier photodiodes to produce independent THz carriers for effective communication.
  • The approach leverages coherent detection and analog-domain processing to facilitate the logical AND operation of dual beams.
  • Spatial mapping results demonstrate a predictive accuracy of about 84%, emphasizing spatial selectivity as a vital security feature.

Abstract

This paper proposes and experimentally demonstrates a novel physical-layer encryption scheme for terahertz (THz) wireless communication based on a logical AND operation between dual THz beams transmitted from spatially separated sources. Unlike previous studies, confined to chip-scale or waveguide configurations, our approach validates the concept under free-space transmission, thereby highlighting its applicability to real wireless environments. The system utilizes uni-traveling carrier photodiodes (UTC-PDs) to generate independent THz carriers, and coherent detection combined with envelope extraction enables analog-domain realization of the AND operation. Experimental results confirm successful decryption at data rates up to 1.5 Gbit/s, achieving bit error rates (BERs) below the forward error correction threshold (e.g., 3.13 × 10−10 at 500 Mbit/s). Furthermore, spatial mapping and simulation show strong agreement with measurements, yielding a predictive accuracy of approximately 84% and validating spatial selectivity as a security feature. These findings establish the novelty of applying dual-beam logical operations for secure THz transmission and provide a foundation for scalable, low-complexity physical-layer security in next-generation wireless networks.

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Cite This Study

Kamiura et al. (2025) studied this question.

synapsesocial.com/papers/68d4759931b076d99fa6db2ehttps://doi.org/10.3390/electronics14193762
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