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Single-photon non-linear optics with a quantum dot in a waveguide

机译:波导中带有量子点的单光子非线性光学器件

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摘要

Strong non-linear interactions between photons enable logic operations for both classical and quantum-information technology. Unfortunately, non-linear interactions are usually feeble and therefore all-optical logic gates tend to be inefficient. A quantum emitter deterministically coupled to a propagating mode fundamentally changes the situation, since each photon inevitably interacts with the emitter, and highly correlated many-photon states may be created. Here we show that a single quantum dot in a photonic-crystal waveguide can be used as a giant non-linearity sensitive at the single-photon level. The non-linear response is revealed from the intensity and quantum statistics of the scattered photons, and contains contributions from an entangled photon–photon bound state. The quantum non-linearity will find immediate applications for deterministic Bell-state measurements and single-photon transistors and paves the way to scalable waveguide-based photonic quantum-computing architectures.
机译:光子之间的强非线性交互作用使经典和量子信息技术都可以进行逻辑运算。不幸的是,非线性相互作用通常是微弱的,因此全光逻辑门往往效率低下。确定性地耦合到传播模式的量子发射器从根本上改变了这种情况,因为每个光子不可避免地与发射器相互作用,并且可能创建高度相关的多光子状态。在这里,我们表明,光子晶体波导中的单个量子点可以用作在单光子级敏感的巨型非线性。非线性响应从散射光子的强度和量子统计数据中揭示出来,并且包含来自纠缠的光子-光子束缚态的贡献。量子非线性将在确定性贝尔状态测量和单光子晶体管中得到直接应用,并为基于可扩展波导的光子量子计算架构铺平了道路。

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