论文标题

纠缠的传感器网络,用于黑暗搜索

Entangled sensor-networks for dark-matter searches

论文作者

Brady, Anthony J., Gao, Christina, Harnik, Roni, Liu, Zhen, Zhang, Zheshen, Zhuang, Quntao

论文摘要

假设的轴突粒子(未知质量)是暗物质(DM)的主要候选者。许多实验搜索具有微波腔的轴,轴可能会转换为腔光子,从而导致腔体的输出功率微不足道。最近的工作[Nature 590,238(2021)]证明,将挤压真空注入腔内可以大大加速轴突搜索。在这里,我们超越并提供了一个理论框架,以利用由许多传感器腔组成的网络环境中的量子挤压的好处。通过形成局部传感器网络,可以将腔之间的信号连贯地组合以增强轴突搜索。此外,在整个空腔中注入多部分纠缠 - 通过挤压真空产生 - 可以减少全球噪音。我们探索了这种局部,纠缠的传感器网络的性能优势,它在传感器之间既有轴法信号和纠缠之间的连贯性。我们的分析与下一代DM轴搜索有关,旨在以最佳方式利用传感器和量子资源网络。最后,我们评估了使用更外来量子状态的可能性,即Gottesman-Kitaev-Preskill(GKP)状态。尽管在理想情况下,相对于单模挤压状态的扫描时间的恒定因素改进,但是当考虑实用测量方案时,使用GKP状态的优势消失了。

The hypothetical axion particle (of unknown mass) is a leading candidate for dark matter (DM). Many experiments search for axions with microwave cavities, where an axion may convert into a cavity photon, leading to a feeble excess in the output power of the cavity. Recent work [Nature 590, 238 (2021)] has demonstrated that injecting squeezed vacuum into the cavity can substantially accelerate the axion search. Here, we go beyond and provide a theoretical framework to leverage the benefits of quantum squeezing in a network setting consisting of many sensor-cavities. By forming a local sensor network, the signals among the cavities can be combined coherently to boost the axion search. Furthermore, injecting multipartite entanglement across the cavities -- generated by splitting a squeezed vacuum -- enables a global noise reduction. We explore the performance advantage of such a local, entangled sensor-network, which enjoys both coherence between the axion signals and entanglement between the sensors. Our analyses are pertinent to next-generation DM-axion searches aiming to leverage a network of sensors and quantum resources in an optimal way. Finally, we assess the possibility of using a more exotic quantum state, the Gottesman-Kitaev-Preskill (GKP) state. Despite a constant-factor improvement in the scan-time relative to a single-mode squeezed-state in the ideal case, the advantage of employing a GKP state disappears when a practical measurement scheme is considered.

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