论文标题
基于纠缠的层析成像以探测新的宏观力量
Entanglement based tomography to probe new macroscopic forces
论文作者
论文摘要
量子纠缠提供了一种新型的方法来测试非相关性制度中的短距离物理学。我们将通过将两个带电的巨大粒子干涉仪相互毗邻,为{\ it有潜在地测试新物理学提供协议。被充电后,这两个叠加将通过由光子介导的电磁相互作用(包括库仑和卡西米尔岩势)纠缠。我们将带来一种基于纠缠的层析成像}的方法,以寻求非常小的纠缠阶段的时间演变,以探测{\ it迄今迄今迄今未知的宏观力量}介导的新物理效应},这可能是由宽川型潜力模拟的两个带电的叠加的原因。对于$ r \ geq 10^{ - 35} $,我们将能够约束Yukawa耦合$α\ geq 10^{ - 35} $,用于在电磁领域发生的新物理学,在电磁领域以及重力$α_g\ geq 10^{ - 8} $ r \ geq 10^^$ r \ geq 10^^ - 6^$ r \ geq for geq \ geq 10^$ r \ geq 10^^---6此外,我们的协议还可以限制粒子质量和耦合等轴,这与现有的实验边界相称。
Quantum entanglement provides a novel way to test short distance physics in the non-relativistic regime. We will provide a protocol to {\it potentially} test new physics by bringing two charged massive particle interferometers adjacent to each other. Being charged, the two superpositions will be entangled via electromagnetic interactions mediated by the photons, including the Coulomb and the Casimir-Polder potential. We will bring a method of {\it entanglement based tomography} to seek time evolution of very small entanglement phases to probe new physical effects mediated by {\it hitherto unknown macroscopic force} which might be responsible for entangling the two charged superpositions modelled by the Yukawa type potential. We will be able to constrain the Yukawa couplings $α\geq 10^{-35}$ for $r\geq 10^{-6}$m for new physics occurring in the electromagnetic sector, and in the gravitational potential $α_g \geq 10^{-8}$ for $r \geq 10^{-6}$m. Furthermore, our protocol can also constrain the axion like particle mass and coupling, which is complimentary to the existing experimental bounds.