论文标题
集成量子光源的自定义非线性配置文件
Custom nonlinearity profile for integrated quantum light sources
论文作者
论文摘要
预示的单光子来源是光学量子技术的基本构建基础。这些来源需要未经过滤和整合,以具有良好的可扩展性并避免不必要的损失。为了实现这一目标,有必要控制田地在波导源中混合和传播时看到的有效非线性。在本文中,我们介绍了一种使用任意形状的有效非线性曲线设计非线性波导的方法。该方法利用了以下事实:二阶非线性响应是张量的数量,因此材料的局部有效非线性取决于参与相互作用的场的传播方向。因此,通过局部更改场的传播方向,我们可以调节波浪混合过程。我们的方法可以显着简化波导制造过程:波导的材料结构是由单个晶体制成的,不再需要方向的图案(OP)或周期性螺栓(PP)。我们使用我们的方法来设计具有在传播长度上高斯的非线性轮廓的波导,从而可以生成完美纯净的释放单个光子。
Heralded single-photon sources are a fundamental building block for optical quantum technologies. These sources need to be unfiltered and integrated to have good scalability and avoid unnecessary losses. To attain this goal, it is necessary to control the effective nonlinearity seen by the fields as they mix and propagate in a waveguide source. In this paper, we introduce a method to design nonlinear waveguides with arbitrarily shaped effective nonlinearity profiles. The method takes advantage of the fact that the second order nonlinear response is a tensor quantity and thus the local effective nonlinearity of a material depends on the propagation direction of the fields participating in the interaction. Thus, by locally changing the propagation direction of the fields we can modulate the wave-mixing process. Our methods allows for the waveguide fabrication process to be significantly simplified: The material structure of the waveguide is made by a single crystal, no longer needing oriented patterning (OP) or periodic poling (PP). We use our method to design waveguides with a nonlinearity profile that is Gaussian in the propagation length, allowing to generate perfectly pure heralded single photons.