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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.optics2024

Integrated electro-optic digital-to-analog link for efficient computing and arbitrary waveform generation

Yunxiang Song, Yaowen Hu, Xinrui Zhu +13

The rapid growth in artificial intelligence and modern communication systems demands innovative solutions for increased computational power and advanced signaling capabilities. Int…

physics.optics2024

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…

physics.optics2024

Cavity-enhanced narrowband spectral filters using rare-earth ions doped in thin-film lithium niobate

Yuqi Zhao, Dylan Renaud, Demitry Farfurnik +5

On-chip optical filters are fundamental components in optical signal processing. While rare-earth ion-doped crystals offer ultra-narrow optical filtering via spectral hole burning,…

physics.optics2024

A Thin Film Lithium Niobate Near-Infrared Platform for Multiplexing Quantum Nodes

Daniel Assumpcao, Dylan Renaud, Aida Baradari +7

Practical quantum networks will require quantum nodes consisting of many memory qubits. This in turn will increase the complexity of the photonic circuits needed to control each qu…

physics.optics2024

Integrated electro-optics on thin-film lithium niobate

Yaowen Hu, Di Zhu, Shengyuan Lu +13

Electro-optics serves as the crucial bridge between electronics and photonics, unlocking a wide array of applications ranging from communications and computing to sensing and quant…