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High-Q photonic resonators and electro-optic coupling using silicon-on-lithium-niobate

机译:高Q光子谐振器和使用硅锂 - 铌酸锂的电光耦合

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Future quantum networks, in which superconducting quantum processors are connected via optical links, will require microwave-to-optical photon converters that preserve entanglement. A doubly-resonant electro-optic modulator (EOM) is a promising platform to realize this conversion. Here, we present our progress towards building such a modulator by demonstrating the optically-resonant half of the device. We demonstrate high quality (Q) factor ring, disk and photonic crystal resonators using a hybrid silicon-on-lithium-niobate material system. Optical Q factors up to 730,000 are achieved, corresponding to propagation loss of 0.8?dB/cm. We also use the electro-optic effect to modulate the resonance frequency of a photonic crystal cavity, achieving a electro-optic modulation coefficient between 1 and 2?pm/V. In addition to quantum technology, we expect that our results will be useful both in traditional silicon photonics applications and in high-sensitivity acousto-optic devices.
机译:未来量子网络,其中超导量子处理器通过光学链接连接,需要微波到光学光子转换器,其保持缠结。双谐振电光调制器(EOM)是一个有望的平台,实现这种转换。在这里,我们通过演示设备的光学谐振一半来展示我们对建立这种调制器的进展。我们展示了使用混合硅式锂铌酸锂材料系统的高质量(Q)因子环,盘和光子晶体谐振器。最高可达730,000的光学Q因子,对应于0.8≤db/ cm的传播损耗。我们还使用电光效应来调制光子晶体腔的谐振频率,实现1到2的电光调制系数。PM / v。除量子技术外,我们预计我们的结果将在传统的硅光子应用和高灵敏度声光器件中有用。

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