论文标题

基于山脊波导的片上单光子源的近乎空调效率

Near-unity efficiency in ridge waveguide-based, on-chip single-photon sources

论文作者

Wang, Yujing, Vannucci, Luca, Burger, Sven, Gregersen, Niels

论文摘要

我们报告了一个数值设计程序,用于通过使用有限元方法进行仿真来追求量子点腔脊指导单光子源的近乎实用耦合效率。我们的最佳设计基于1D纳米孔腔,可实现高源效率$ε_{xy} $ 97.7 $ \%$的$ \%$,用于平面内偶极子,以及显着的purcell系数,38.6。如此良好的性能主要归因于GAAS/SIO $ _2 $的高指数对比度以及实现建设性干扰和低散射损失的仔细的空腔设计。此外,我们分析了提出的平台的瓶颈,这是腔模式与纳米梁中Bloch模式之间的模式不匹配。因此,我们通过实现锥度截面来提出任意高效率单光子源的优化配方,该锥度截面的高光滑度有助于逐渐克服模式不匹配,从而导致较高的purcell因子和源效率。最后,在考虑到孔变化上逼真的制造缺陷之下,我们看到了锥形系统中源特性的良好鲁棒性。

We report a numerical design procedure for pursuing a near-unity coupling efficiency in quantum dot-cavity ridge waveguide single-photon sources by performing simulations with the finite element method. Our optimum design which is based on a 1D nanobeam cavity, achieves a high source efficiency $ε_{xy}$ of 97.7$\%$ for an isotropic in-plane dipole, together with a remarkable Purcell factor of 38.6. Such a good performance is mainly attributed to the high index contrast of GaAs/SiO$_2$ and a careful cavity design achieving constructive interference and low scattering losses. Furthermore, we analyze the bottleneck of the proposed platform, which is the mode mismatch between the cavity mode and the Bloch mode in the nanobeam. Accordingly, we present the optimization recipe of an arbitrarily high-efficiency on-chip single-photon source by implementing a taper section, whose high smoothness is beneficial to gradually overcoming the mode mismatch, and therefore leading to a higher Purcell factor and source efficiency. Finally, we see good robustness of the source properties in the taper-nanobeam system under the consideration of realistic fabrication imperfections on the hole variation.

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