Chelladurai Daniel, Kohli Manuel, Winiger Joel, Moor David, Messner Andreas, Fedoryshyn Yuriy, Eleraky Mohammed, Liu Yuqi, Wang Hua, Leuthold Juerg
Institute of Electromagnetic Fields (IEF), ETH Zurich, Zurich, Switzerland.
Zurich Instruments AG, Zurich, Switzerland.
Nat Mater. 2025 Jun;24(6):868-875. doi: 10.1038/s41563-025-02158-1. Epub 2025 Mar 17.
The Pockels effect is essential for controlling optical signals at the highest speeds, particularly for electro-optic modulators in photonic integrated circuits. Lithium niobate (LN) and barium titanate (BTO) are two excellent Pockels materials to this end. Here we measure the Pockels coefficients and permittivity in LN and BTO over a continuous frequency range from 100 MHz to 330 GHz. These properties are constant across this frequency range in LN, but have a strong frequency dependence in BTO. Still, our measurements show that BTO has remarkable electro-optic properties compared with LN. Furthermore, we show how BTO devices can be designed with a flat electro-optic frequency response despite the Pockels coefficient dispersion. Finally, we expound our method for broadband characterization of these vital electro-optic properties, utilizing specialized integrated electro-optic phase shifters. Altogether, this work empowers the design of high-speed BTO devices and the development of new electro-optic materials.
泡克尔斯效应对于以最高速度控制光信号至关重要,特别是对于光子集成电路中的电光调制器而言。铌酸锂(LN)和钛酸钡(BTO)为此是两种出色的泡克尔斯材料。在此,我们在从100 MHz到330 GHz的连续频率范围内测量了LN和BTO中的泡克尔斯系数和介电常数。这些特性在LN的这个频率范围内是恒定的,但在BTO中具有很强的频率依赖性。尽管如此,我们的测量表明,与LN相比,BTO具有卓越的电光特性。此外,我们展示了如何设计具有平坦电光频率响应的BTO器件,尽管泡克尔斯系数存在色散。最后,我们阐述了利用专门的集成电光移相器对这些重要电光特性进行宽带表征的方法。总之,这项工作推动了高速BTO器件的设计以及新型电光材料的开发。