论文标题

可集成的原子干扰素

Integrable atomtronic interferometry

论文作者

Grun, D. S., Ymai, L. H., Wilsmann, Karin Wittmann, Tonel, A. P., Foerster, A., Links, J.

论文摘要

高灵敏度量子干涉测量法还不仅需要访问纠缠状态。它是通过对系统中量子相关性的深刻理解来实现的。可集成的模型为发展这种理解提供了框架。我们为一个可集成模型的干涉测量协议的设计传达,该模型描述了四个位点配置中玻色子的相互作用。计算了某些可观察物的量子动力学的分析公式。这些既将系统的功能都视为中午状态的干涉标识符和生产者。该系统等同于作用于两个混合动力的受控遗传门,还强调了海森伯格限制的干涉法和量子信息之间的等效性。预计这些结果将为可集成性增强的原子能技术开放新的途径。

High sensitivity quantum interferometry requires more than just access to entangled states. It is achieved through deep understanding of quantum correlations in a system. Integrable models offer the framework to develop this understanding. We communicate the design of interferometric protocols for an integrable model that describes the interaction of bosons in a four-site configuration. Analytic formulae for the quantum dynamics of certain observables are computed. These expose the system's functionality as both an interferometric identifier, and producer, of NOON states. Being equivalent to a controlled-phase gate acting on two hybrid qudits, this system also highlights an equivalence between Heisenberg-limited interferometry and quantum information. These results are expected to open new avenues for integrability-enhanced atomtronic technologies.

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