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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analytical description of photonic waveguides with multilayer claddings: Towards on-chip generation of entangled photons and Bell states
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Analytical description of photonic waveguides with multilayer claddings: Towards on-chip generation of entangled photons and Bell states

机译:具有多层覆层的光子波导的分析描述:纠缠光子和贝尔态的片上生成

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摘要

We present a theoretical description of slab and ridge waveguides with multilayer claddings, such as Bragg reflection waveguides (BRWs), using analytical expressions based on Fresnel and Airy formulas. This approach simplifies the waveguide calculations in comparison with more traditional techniques such as the transfer matrix method or direct stitching of plane-wave solutions at layer interfaces. Approximate but simple and straightforward analytic relations describing the effective indices and group velocities of guided modes in arbitrary 1D BRWs are derived. The formalism is then extended to 2D ridge waveguides using the effective index method. The approach is employed to engineer BRWs where several types of phase matching are present simultaneously at the same wavelength, as well as BRWs where photons generated by spontaneous parametric downconversion have the maximal degree of polarization entanglement. These results promote the use of BRWs as on-chip entangled photon sources, and facilitate on-chip generation of multiple optical Bell states. The designs are based on the AlGaAs fabrication platform and are within reach of experimental realization.
机译:我们使用基于菲涅耳和艾里公式的解析表达式,对带有多层包层的平板和脊形波导(例如布拉格反射波导(BRW))进行理论描述。与更传统的技术(例如传递矩阵法或层界面处的平面波解决方案的直接缝合)相比,该方法简化了波导计算。得出了近似但简单明了的解析关系,描述了任意一维BRW中引导模式的有效指标和组速度。然后使用有效折射率方法将形式主义扩展到2D脊形波导。该方法用于设计在相同波长下同时存在几种类型的相位匹配的BRW,以及通过自发参数下变频产生的光子具有最大偏振纠缠度的BRW。这些结果促进了BRW作为芯片上纠缠的光子源的使用,并促进了多个光学贝尔状态的芯片上生成。这些设计基于AlGaAs制造平台,并且可以通过实验实现。

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