Deterministic Generation of Qudit Photonic Graph States from Quantum Emitters

Zahra Raissi, Edwin Barnes, Sophia E. Economou
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Abstract

We propose and analyze deterministic protocols to generate qudit photonic graph states from quantum emitters. We show that our approach can be applied to generate any qudit graph state and we exemplify it by constructing protocols to generate one- and two-dimensional qudit cluster states, absolutely maximally entangled states, and logical states of quantum error-correcting codes. Some of these protocols make use of time-delayed feedback, while others do not. The only additional resource requirement compared to the qubit case is the ability to control multilevel emitters. These results significantly broaden the range of multiphoton entangled states that can be produced deterministically from quantum emitters.

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从量子发射器确定性地生成 Qudit 光子图态
我们提出并分析了从量子发射器生成量子光子图状态的确定性协议。我们通过构建协议来生成一维和二维量子簇态、绝对最大纠缠态以及量子纠错码的逻辑态,证明我们的方法可用于生成任何量子图态。其中一些协议利用了延时反馈,而另一些则没有。与量子比特情况相比,唯一的额外资源要求是控制多级发射器的能力。这些成果大大拓宽了量子发射器可确定产生的多光子纠缠态的范围。
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