Exploring Photonic THz-ISAC Systems with Integrated Waveforms
Journal of Lightwave Technology 2025
Zhidong Lyu, Lu Zhang, Quizhuo Deng, Xing Fang, Liga Bai, Yan-Ting Sun, Oskars Ozoliņš, Guanqyi Liu, Xiaodan Pang, Xianbin Yu

Integrated sensing and communication (ISAC) is a key pillar for future wireless networks, demanding solutions that simultaneously deliver high-capacity communication and highaccuracy sensing. The terahertz (THz) band, particularly when integrated with fiber-optic networks, emerges as a highly promising candidate, offering the potential for terabit-per-second communication data rates and millimeter-level sensing resolution. Crucially, the integrated waveform is paramount to efficiently and seamlessly combine these dual functionalities, enabling compact frontends design and streamlined baseband processing for photonic THz-ISAC systems. This article presents our recent system-level investigations into diverse integrated ISAC waveform designs. We further synthesize and discuss the latest global research and development progress in advancing this rapidly evolving field.


Atslēgas vārdi
integrated sensing and communication; integrated waveform design; terahertz photonics
DOI
10.1109/JLT.2025.3615209
Hipersaite
https://ieeexplore.ieee.org/document/11184138

Lyu, Z., Zhang, L., Deng, Q., Fang, X., Bai, L., Sun, Y., Ozoliņš, O., Liu, G., Pang, X., Yu, X. Exploring Photonic THz-ISAC Systems with Integrated Waveforms. Journal of Lightwave Technology, 2025, Vol. 9, No. 9, 1.-10.lpp. ISSN 0733-8724. e-ISSN 1558-2213. Pieejams: doi:10.1109/JLT.2025.3615209

Publikācijas valoda
English (en)
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