collaborators

8 papers

physics.optics2026

Inverse-designed photonic interfaces beyond eigenmode expansion limits

Chengfei Shang, Zhaoxi Chen, Yifan Wu +2

Photonic integrated circuits (PICs) enable optical systems with dramatically increased performance, cost-effectiveness, and scalability through enhanced light-matter interactions,…

physics.optics2026

Integrated Terahertz Photonic Receiving Frontend with Link Noise Outperforming Electronics

Yuansong Zeng, Zixi Wang, Liga Bai +13

Terahertz technology is a key enabler for sixth-generation (6G) wireless networks, yet its application is constrained by increasingly severe free-space loss at high frequencies. To…

physics.optics2026

Multi-channel high-speed flip-chip packaging platform for thin-film lithium niobate photonic circuits

Zhenzheng Wang, Xiangzhi Xie, Yikun Chen +11

To address the urgent need for multi-channel high-speed electrical interfacing of thin-film lithium niobate (TFLN) photonic circuits, we realize a flip-chip packaging platform capa…

physics.optics2026

Integrated lithium niobate microwave photonics: Driving next-generation wireless technologies

Hanke Feng, Yuansong Zeng, Kaixuan Ye +7

Integrated microwave photonics (MWP) offers a powerful paradigm for handling high-speed microwave signals within chip-scale optical systems. It provides a cost-effective solution t…

physics.optics2025

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

Yuansheng Tao, Hanke Feng, Yuan Fang +12

The sixth generation (6G) wireless networks require dynamic spectrum management to optimize the utilization of scarce spectral resources and support emerging integrated sensing and…

physics.optics2025

Ultrabroadband Integrated Photonics Empowering Full-Spectrum Adaptive Wireless Communications

Zihan Tao, Haoyu Wang, Hanke Feng +10

The forthcoming sixth-generation (6G) and beyond (XG) wireless networks are poised to operate across an expansive frequency range from microwave, millimeter-wave to terahertz bands…