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Generation of entangled photon pairs from a single quantum dot embedded in a planar photonic-crystal cavity

机译:从嵌入在平面光子晶体腔中的单个量子点生成纠缠光子对

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We present a formal theory of single quantum dot coupling to a planar photonic crystal that supports quasidegenerate cavity modes and use this theory to describe and optimize entangled-photon pair generation via the biexciton-exciton cascade. In the generated photon pairs, either both photons are spontaneously emitted from the dot or one photon is emitted from the biexciton spontaneously while the other is emitted via the leaky cavity mode. In the strong-coupling regime, the generated photon pairs can be maximally entangled in qualitative agreement with the dressed-state predictions of Johne et al. [Phys. Rev. Lett. 100, 240404 (2008)]. We derive useful analytical formulas for the spectrum of the emitted photon pairs in the presence of exciton and biexciton broadening, which is necessary to connect to realistic experiments and demonstrate the important differences with the approximate dressed-state approach. We also present a method for calculating and optimizing the entanglement between the emitted photons, which can account for postsample spectral filtering. Pronounced entanglement values of greater than 80% are demonstrated using experimentally achievable parameters even without spectral filtering.
机译:我们提出了一个单量子点耦合到一个平面光子晶体的形式化理论,该光子晶体支持quasidegenerate腔模式,并使用该理论来描述和优化通过双激子-激子级联产生的纠缠光子对。在生成的光子对中,两个光子要么从点自发发射,要么一个光子自双激子自发发射,而另一个通过泄漏腔模式发射。在强耦合状态下,所产生的光子对可以与Johne等人的修正状态预测在质量上最大程度地纠缠。 [物理牧师100,240404(2008)]。我们得出了在激子和双激子展宽的情况下发射的光子对的光谱的有用分析公式,这对于连接实际实验和证明近似穿戴状态方法的重要区别是必要的。我们还提出了一种计算和优化发射光子之间纠缠的方法,该方法可以解决后采样光谱滤波问题。使用实验可达到的参数甚至在没有光谱滤波的情况下也证明了大于80%的明显纠缠值。

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