在化中广泛的非退化非线性频率转换在扩散酸波导中分散酸波导
Optics express
|December 19, 2025
概括
在中扩散的酸波导显示在低温条件下由于火电和光折射引起的光谱变化. 这些效应会导致微小的变化,影响量子光子设备的性能.
科学领域:
- 量子光子学 是一个量子光子学.
- 材料科学是一种材料科学.
- 集成光学 集成光学
背景情况:
- 中扩散酸 (Ti:LiNbO3) 波导对于在室温下量子光子元件至关重要.
- 为了与特定的量子光源和超导探测器相兼容,需要冷运行.
研究的目的:
- 描述冷条件对Ti:LiNbO3波导中的相匹配和模式引导的影响.
- 在冷却下评估非退化的自发参数下转换 (SPDC) 过程中的光谱变化.
主要方法:
- 在冷温度下对SPDC发射波长 (1556nm和950nm) 的实验性表征.
- 实验光谱特性与理论模型的比较.
主要成果:
- 低温条件在Ti:LiNbO3波导中诱导热电和光折射效应.
- 这些效应会在冷却周期内和冷却周期之间引起微小但显著的光谱变化.
- 观察到的光谱特性与理论预测保持一致,尽管有冷诱导的变化.
结论:
- 在冷却条件下,Ti:LiNbO3波导表现出改变的相匹配和模式引导.
- 热电和光折射是影响低温性能的关键因素.
- 为比较其他非线性光子集成平台提供了一个基准,比如薄膜酸.
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