论文标题
尼奥贝特微矿物谐振器中的降低光饮用效应
Mitigating photorefractive effect in thin-filmlithium niobate microring resonators
论文作者
论文摘要
薄膜硅锂是一个有吸引力的集成光子平台,因为其光学损失低以及有利的光学非线性和电光特性。但是,在诸如第二次谐波生成,频率梳子生成和微波转换之类的应用中,设备性能会受到薄膜固有的光致效应效应的强烈阻碍。在本文中,我们表明,尼贝特锂微孔谐振器上的介电覆层对光赋予效应有重大影响。通过去除介电覆层层,可以有效地减轻硝酸锂环谐振器中的光致热效应。我们的工作提出了一种可靠的方法,可以控制对薄膜硅锂的光致热效应,并将进一步提高基于薄膜硅锂锂锂的综合经典和量子光子设备的性能。
Thin-film lithium niobate is an attractive integrated photonics platform due to its low optical loss and favorable optical nonlinear and electro-optic properties. However, in applications such as second harmonic generation, frequency comb generation, and microwave-to-optics conversion, the device performance is strongly impeded by the photorefractive effect inherent in thin-films. In this paper, we show that the dielectric cladding on lithium niobate microring resonator has a significant influence on the photorefractive effect. By removing the dielectric cladding layer, the photorefractive effect in lithium niobate ring resonators can be effectively mitigated. Our work presents a reliable approach to control the photorefractive effect on thin-film lithium niobate and will further advance the performance of integrated classical and quantum photonic devices based on thin-film lithium niobate.