论文标题

来自同一芯片上不同分子的实时两光子干扰

Real-time two-photon interference from distinct molecules on the same chip

论文作者

Duquennoy, R., Colautti, M., Emadi, R., Majumder, P., Lombardi, P., Toninelli, C.

论文摘要

可伸缩性和微型化是光子量子技术的固态平台的标志。仍然是一个主要的挑战是芯片上不同发射器的两光子干扰。这需要局部调整,集成和新颖的方法来理解和驯服噪声过程。有希望的平台是分子单光子源的平台。具有光学上可调发射频率的数千个分子可以很容易地在固体矩阵中分离,并用脉冲激发触发。我们在这里讨论了使用几个微米内的几个分子夫妇伴侣讨论Hong-Ou-Mandel干扰实验。实时观察到量子干扰,从而可以分析不同时间尺度的局部环境效应。

Scalability and miniaturization are hallmarks of solid-state platforms for photonic quantum technologies. Still a main challenge is two-photon interference from distinct emitters on chip. This requires local tuning, integration and novel approaches to understand and tame noise processes. A promising platform is that of molecular single photon sources. Thousands of molecules with optically tuneable emission frequency can be easily isolated in solid matrices and triggered with pulsed excitation. We here discuss Hong-Ou-Mandel interference experiments using several couples of molecules within few tens of microns. Quantum interference is observed in real time, enabling the analysis of local environment effects at different time-scales.

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