Maeder Andreas, Kaufmann Fabian, Pohl David, Kellner Jost, Grange Rachel
Opt Lett. 2022 Sep 1;47(17):4375-4378. doi: 10.1364/OL.469358.
Phase shifters are key components of large-scale photonic integrated circuits. For the lithium niobate-on-insulator (LNOI) platform, thermo-optic phase shifters (TOPS) have emerged as a more stable and compact alternative to common electro-optic phase shifters (EOPSs), which are prone to anomalous behavior and drifting at low frequencies. Here, we model and experimentally characterize the influence of geometry on the performance of metal strip TOPSs. Compared to EOPSs, a 10-fold reduction of the voltage-length product is measured and bandwidths beyond 100 kHz are demonstrated, while keeping the footprint as low as 0.04 mm. This shows the potential of TOPSs as small-scale building blocks for stable tuning and switching in LNOI photonic circuits.
相位调制器是大规模光子集成电路的关键组件。对于绝缘体上铌酸锂(LNOI)平台而言,热光相位调制器(TOPS)已成为普通电光相位调制器(EOPS)更稳定、更紧凑的替代方案,后者在低频下容易出现异常行为和漂移。在此,我们对金属条TOPS的几何结构对其性能的影响进行建模并通过实验进行表征。与EOPS相比,测得的电压-长度乘积降低了10倍,并且展示了超过100 kHz的带宽,同时保持占用面积低至0.04平方毫米。这表明TOPS作为LNOI光子电路中用于稳定调谐和开关的小规模构建模块的潜力。