论文标题

单量子发射器dicke增强

Single Quantum Emitter Dicke Enhancement

论文作者

Tufarelli, Tommaso, Friedrich, Daniel, Groß, Heiko, Hamm, Joachim, Hess, Ortwin, Hecht, Bert

论文摘要

将$ n $相同的发射器耦合到同一场上模式是增强光质交互的良好方法。但是,耦合强度的结果$ \ sqrt {n} $增强作用是以“线性化”(有效半古典)动力学成本为代价。在这里,我们演示了一种新的方法,用于增强\ textit {single}量子发射器的耦合常数,同时保留了光 - 象征相互作用的非线性特征。我们考虑一个单个量子发射极,$ n $几乎退化过渡,该量子集体耦合到同一场模式。我们表明,在这种情况下,出现了有效的Jaynes-Cummings模型,并具有订单$ \ sqrt {n} $的增强耦合常数。分析了我们的一般结论的有效性和后果,分析了启发性案例$ n = 2 $。我们进一步观察到,我们的系统可以紧密匹配jaynes-cummings物理的典型的光谱线形状和光子自相关功能,因此证明保留了量子光学非线性。我们的发现与最近的宽带等离激子纳米辅音偶联实验非常吻合,因此将促进在环境条件下单光子非线性的控制和检测。

Coupling $N$ identical emitters to the same field mode is well-established method to enhance light matter interaction. However, the resulting $\sqrt{N}$ boost of the coupling strength comes at the cost of a "linearized" (effectively semi-classical) dynamics. Here, we instead demonstrate a new approach for enhancing the coupling constant of a \textit{single} quantum emitter, while retaining the nonlinear character of the light-matter interaction. We consider a single quantum emitter with $N$ nearly degenerate transitions that are collectively coupled to the same field mode. We show that in such conditions an effective Jaynes-Cummings model emerges, with a boosted coupling constant of order $\sqrt{N}$. The validity and consequences of our general conclusions are analytically demonstrated for the instructive case $N=2$. We further observe that our system can closely match the spectral line shapes and photon autocorrelation functions typical of Jaynes-Cummings physics, hence proving that quantum optical nonlinearities are retained. Our findings match up very well with recent broadband plasmonic nanoresonator strong-coupling experiments and will therefore facilitate the control and detection of single-photon nonlinearities at ambient conditions.

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