论文标题

量子重力引起的质量纠缠中的仪器的重力分解

Gravitational decoherence by the apparatus in the quantum-gravity induced entanglement of masses

论文作者

Gunnink, Fabian, Mazumdar, Anupam, Schut, Martine, Toroš, Marko

论文摘要

现代物理学中的重要问题之一是如何测试重力在实验室中是经典还是量子。最近,已经提出了通过创建附近两个中性质量的量子叠加来测试重力的量子性质的建议,足以使重力的量子性质可以纠缠两个量子系统,但仍然足够远,以至于所有其他已知的标准模型相互作用仍然可以忽略不计。但是,仅准备中性质量叠加状态(光系统)的过程需要实验室设备(重型系统)的附近。我们将假设这样一个重型系统可以建模为另一个量子系统。由于重力是通用的,因此较轻的系统可能会与较重的系统纠缠,从而提供了固有的重力矫正来源。在本文中,我们将考虑两个光和两个重型量子振荡器,形成探针检测系​​统对,并研究在何种条件下,两个光系统之间的纠缠逃避了重型系统引起的逆转。我们通过估计提出的实验测试重力量子性质的变质的大小来结束。

One of the outstanding questions in modern physics is how to test whether gravity is classical or quantum in a laboratory. Recently there has been a proposal to test the quantum nature of gravity by creating quantum superpositions of two nearby neutral masses, close enough that the quantum nature of gravity can entangle the two quantum systems, but still sufficiently far away that all other known Standard Model interactions remain negligible. However, the mere process of preparing superposition states of a neutral mass (the light system), requires the vicinity of laboratory apparatus (the heavy system). We will suppose that such a heavy system can be modelled as another quantum system; since gravity is universal, the lighter system can get entangled with the heavier system, providing an inherent source of gravitational decoherence. In this paper, we will consider two light and two heavy quantum oscillators, forming pairs of probe-detector systems, and study under what conditions the entanglement between two light systems evades the decoherence induced by the heavy systems. We conclude by estimating the magnitude of the decoherence in the proposed experiment for testing the quantum nature of gravity.

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