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20242026
most citedMonolithic lithium niobate photonic chip for efficient terahertz-optic modulation and terahertz generation

1 citations · 1 across the 4 of their papers we have counts for

collaborators

6 papers

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.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.optics2024

Broadband millimeter-wave frequency mixer based on thin-film lithium niobate photonics

Xiangzhi Xie, Hanke Feng, Yuansheng Tao +5

Frequency mixers are fundamental components in modern wireless communication and radar systems, responsible for up- and down-conversion of target radio-frequency (RF) signals. Rece…

physics.optics2024

Microwave resonator-enabled broadband on-chip electro-optic frequency comb generation

Zhaoxi Chen, Yiwen Zhang, Hanke Feng +3

Optical frequency combs play a crucial role in optical communications, time-frequency metrology, precise ranging, and sensing. Among various generation schemes, resonant electro-op…

physics.optics20241 cited

Monolithic lithium niobate photonic chip for efficient terahertz-optic modulation and terahertz generation

Yiwen Zhang, Jingwei Yang, Zhaoxi Chen +5

The terahertz (THz) frequency range, bridging the gap between microwave and infrared frequencies, presents unparalleled opportunities for advanced imaging, sensing, communications,…

physics.optics2024

In-situ optical vector analysis based on integrated lithium niobate single-sideband modulators

Hanke Feng, Tong Ge, Yaowen Hu +6

Optical vector analysis (OVA) is an enabling technology for comprehensively characterizing both amplitude and phase responses of optical devices or systems. Conventional OVA techno…