activity
20202026
most citedHigh-Q Lithium Niobate Microcavities and Their Applications

14 citations · 25 across the 9 of their papers we have counts for

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physics.optics2026

Understanding Intrinsic Loss in Thin-Film Lithium Niobate Ring Resonators via Adiabatic Coupling

Xinrui Zhu, Hana K. Warner, Yunxiang Song +2

Thin-film lithium niobate (TFLN) has emerged as a versatile integrated photonics platform, combining strong electro-optic and nonlinear effects. Among TFLN devices, ring resonators…

physics.optics2025

Strong-coupling and high-bandwidth cavity electro-optic modulation for advanced pulse-comb synthesis

Tianqi Lei, Yunxiang Song, Yanyun Xue +3

Cavity electro-optic (EO) modulation plays a pivotal role in optical pulse and frequency comb synthesis, supporting a wide range of applications including communication, computing,…

physics.optics2025

Wireless millimeterwave electro-optics on thin film lithium niobate

A. Gaier, K. Mamian, S. Rajabali +6

The rapid growth of global data traffic is accelerating the need for ultra-broadband communication technologies, particularly in cloud infrastructure and emerging 6G wireless syste…

physics.optics2025

A sub-volt near-IR lithium tantalate electro-optic modulator

Keith Powell, Dylan Renaud, Xudong Li +4

We demonstrate a low-loss integrated electro-optic Mach-Zehnder modulator in thin-film lithium tantalate at 737 nm, featuring a low half-wave voltage-length product of 0.65 V$\cdot…

physics.optics2025

Robust Poling and Frequency Conversion on Thin-Film Periodically Poled Lithium Tantalate

Anna Shelton, C. J. Xin, Keith Powell +4

We explore a robust fabrication process for periodically-poled thin-film lithium tantalate (PP-TFLT) by systematically varying fabrication parameters and confirming the quality of…

physics.optics20248 cited

Integrated lithium niobate photonic computing circuit based on efficient and high-speed electro-optic conversion

Yaowen Hu, Yunxiang Song, Xinrui Zhu +24

Here we show a photonic computing accelerator utilizing a system-level thin-film lithium niobate circuit which overcomes this limitation. Leveraging the strong electro-optic (Pocke…