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First Demonstration of 128-Gbit/s 300-GHz-band THz Transmission Using OFC-based Transmitter and Intradyne Receiver.

, , , , , , , and . OECC/PSC, page 1-3. IEEE, (2022)

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Enabling Technologies for Real-time 50-Gbit/s Wireless Transmission at 300 GHz., , and . NANOCOM, page 10:1-10:5. ACM, (2015)Observation of the internal waveforms in high-speed high-density LSIs using an EOS prober., , , , and . Microelectron. Reliab., 41 (8): 1203-1209 (2001)THz communication systems.. OFC, page 1-90. IEEE, (2017)Near-Field Mapping System Using Fiber-Based Electro-Optic Probe for Specific Absorption Rate Measurement., , and . IEICE Trans. Electron., 90-C (2): 436-442 (2007)Generation of coherent sub-terahertz carrier with phase stabilization for wireless communications., , , , , and . J. Commun. Networks, 15 (6): 569-575 (2013)300-GHz-Band Diplexer for Frequency-Division Multiplexed Wireless Communication., , , , , , , , , and . IEICE Trans. Electron., 106 (11): 722-726 (November 2023)300-GHz-band Wireless Link Using Photonics-based Ultralow-noise Transmitter and Receiver., , , , , , , , , and 1 other author(s). OFC, page 1-3. IEEE, (2023)Millimeter-wave and Terahertz Photonics for Communications and Sensors., , and . OFC, page 1-3. IEEE, (2021)An Automated Optical On-Wager Probing System for Ultra-High-Speed ICs., and . ITC, page 834-839. IEEE Computer Society, (1992)First Demonstration of 128-Gbit/s 300-GHz-band THz Transmission Using OFC-based Transmitter and Intradyne Receiver., , , , , , , and . OECC/PSC, page 1-3. IEEE, (2022)