论文标题

引力波影响真空纠缠

Gravitational waves affect vacuum entanglement

论文作者

Xu, Qidong, Ahmad, Shadi Ali, Smith, Alexander R. H.

论文摘要

纠缠收集方案是探测真空纠缠的操作方法。该协议依赖于两个原子,该原子最初未进入,这些原子是由Unruh-Dewitt检测器建模的。然后,这些原子与田间局部相互作用并纠缠在一起。如果原子保持间距分离,则它们之间的任何纠缠都是从田间“收获”的纠缠的结果。因此,量化这种纠缠是对纠缠原子相互作用的区域的纠缠方式的代理。使用该方案,证明,尽管一个惯性原子的过渡概率不受引力波的存在的影响,但两个原子收获的纠缠依赖于引力波的频率,而当检测器的能量间隙调谐到重力频率时,表现出了新颖的共振效果。这表明,重力波留下的纠缠签名可能有助于表征其性质,并且有可能在探索重力波记忆效应和引力波引起的反折叠性方面有用。

The entanglement harvesting protocol is an operational way to probe vacuum entanglement. This protocol relies on two atoms, modelled by Unruh-DeWitt detectors, that are initially unentangled. These atoms then interact locally with the field and become entangled. If the atoms remain spacelike separated, any entanglement between them is a result of entanglement that is `harvested' from the field. Thus, quantifying this entanglement serves as a proxy for how entangled the field is across the regions in which the atoms interacted. Using this protocol, it is demonstrated that while the transition probability of an individual inertial atom is unaffected by the presence of a gravitational wave, the entanglement harvested by two atoms depends sensitively on the frequency of the gravitational wave, exhibiting novel resonance effects when the energy gap of the detectors is tuned to the frequency of the gravitational wave. This suggests that the entanglement signature left by a gravitational wave may be useful in characterizing its properties, and potentially useful in exploring the gravitational-wave memory effect and gravitational-wave induced decoherence.

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