论文标题

可区分光子的芯片量子信息处理

On-chip quantum information processing with distinguishable photons

论文作者

Yard, Patrick, Jones, Alex E., Paesani, Stefano, Maïnos, Alexandre, Bulmer, Jacob F. F., Laing, Anthony

论文摘要

多光子干扰是光子量子技术的核心。集成腔的阵列可以支持具有较高纯度和较小足迹的单光子的明亮来源,但是从非相同腔体产生的光子之间的必然光谱可区分性是扩展的障碍。原则上,可以通过用高正时分辨率测量光子来缓解此问题,从而通过时间能量不确定性关系消除光谱信息。在这里,我们在实验上证明,可以使用足以干扰基于腔体的集成光子源所需的尺度上的光子来实现检测。通过将系统的有效定时分辨率从200PS增加到20PS,我们观察到来自6.8GHz凝结的综合微环谐振源的独立光子之间量子干扰的可见性增加了20%。我们继续展示如何使用非理想光子的时间分辨检测来提高纠缠操作的保真度,并减轻玻色子采样实验中计算复杂性的降低。这些结果为使用许多光子源的光子量子信息处理铺平了道路,而无需进行主动比对。

Multi-photon interference is at the heart of photonic quantum technologies. Arrays of integrated cavities can support bright sources of single-photons with high purity and small footprint, but the inevitable spectral distinguishability between photons generated from non-identical cavities is an obstacle to scaling. In principle, this problem can be alleviated by measuring photons with high timing resolution, which erases spectral information through the time-energy uncertainty relation. Here, we experimentally demonstrate that detection can be implemented with a temporal resolution sufficient to interfere photons detuned on the scales necessary for cavity-based integrated photon sources. By increasing the effective timing resolution of the system from 200ps to 20ps, we observe a 20% increase in the visibility of quantum interference between independent photons from integrated micro-ring resonator sources that are detuned by 6.8GHz. We go on to show how time-resolved detection of non-ideal photons can be used to improve the fidelity of an entangling operation and to mitigate the reduction of computational complexity in boson sampling experiments. These results pave the way for photonic quantum information processing with many photon sources without the need for active alignment.

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