极化
钛酸钡
材料科学
光电子学
光子学
电子工程
神经形态工程学
波克尔效应
极化(电化学)
铁电性
光学
硅光子学
光通信
光放大器
双偏振干涉法
透射系数
传输(电信)
光调制器
计算机科学
光学工程
微波食品加热
作者
Benton Qiu,Charles St-Arnault,Santiago Bernal,Kaibo Zhang,Aleksandar Nikic,Yixiang Hu,Cyriel Minkenberg,Wouter Diels,Pascal Stark,Stefan Abel
出处
期刊:
[Figshare (United Kingdom)]
日期:2026-04-29
标识
DOI:10.6084/m9.figshare.c.8399121
摘要
High-speed optical links will be essential to match the ever growing demands of data centers driven by artificial intelligence. Barium titanate (BTO) has emerged as a promising and novel technology for high speed optical modulators due to its excellent electro-optic (EO) properties and compatibility with the standard silicon photonics process. We demonstrate the first dual polarization in-phase quadrature modulator on the BTO platform with record data rates of 1.15 Tbps over an 80 km link. Achieving such performance requires active poling of BTO under an applied bias to fully realize its EO potential. We present an analysis of the poling bias impact on device Pockels coefficient and assess the resulting performance in a high-speed optical transmission system. Various poling procedures are investigated, and the influence of ferroelectric hysteresis on device and system performance is studied. Our findings are broadly applicable to other BTO applications with relevance to quantum computing, neuromorphic computing, microwave photonics and optical switching. This demonstration and study highlights BTO as a promising modulator technology for next-generation optical transmission systems.
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