论文标题

使用纠缠多光子状态的确定性来源的光相测量

Optical Phase Measurement Using a Deterministic Source of Entangled Multi-photon States

论文作者

Peniakov, Giora, Su, Zu-En, Beck, Ayal, Cogan, Dan, Amar, Or, Gershoni, David

论文摘要

光阶段的精确测量在科学和技术中具有许多应用。已经建议使用纠缠的多光子状态进行精确执行此类测量,从而显着超过射击限制。直到最近,此类状态仍主要使用自发参数下转换生成 - 这种过程本质上是概率的,可以抵消纠缠的光子状态可能具有的优势。在这里,我们使用一个确定性的方式使用半导体量子点以确定性的方式生成纠缠的多光子状态,并使用受约束自旋的定期定时激发。这样,我们以超过300 MHz的速率一对一纠缠光子。我们使用所得的多光子状态来证明超分辨光相测量。我们的结果开辟了一种可扩展的方式,可以在不久的将来实现真正的量子增强的超敏感测量。

Precision measurements of optical phases have many applications in science and technology. Entangled multi-photon states have been suggested for performing such measurements with precision that significantly surpasses the shot-noise limit. Until recently, such states have been generated mainly using spontaneous parametric down-conversion -- a process which is intrinsically probabilistic, counteracting the advantages that the entangled photon states might have. Here, we use a semiconductor quantum dot to generate entangled multi-photon states in a deterministic manner, using periodic timed excitation of a confined spin. This way we entangle photons one-by-one at a rate which exceeds 300 MHz. We use the resulting multi-photon state to demonstrate super-resolved optical phase measurement. Our results open up a scalable way for realizing genuine quantum enhanced super-sensitive measurements in the near future.

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