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Quantum sensor networks as exotic field telescopes for multi-messenger astronomy

机译:Quantum传感器网络作为异乎寻常的场望远镜用于多信使天文学

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Precision quantum sensor networks are a useful and viable tool in multi-messenger astronomy for the detection of exotic fields that go beyond standard model theories. They could, for example, detect intense bursts of exotic low-mass fields generated by high-energy astrophysical events.Multi-messenger astronomy, the coordinated observation of different classes of signals that originate from the same astrophysical event, provides a wealth of information about astrophysical processes(1). So far, multi-messenger astronomy has correlated signals from known fundamental forces and standard model particles like electromagnetic radiation, neutrinos and gravitational waves. Many of the open questions of modern physics suggest the existence of exotic fields with light quanta (with masses MUCH LESS-THAN1 eV c(-2)). Quantum sensor networks could be used to search for astrophysical signals that are predicted by theories beyond the standard model(2) that address these questions. Here, we show that networks of precision quantum sensors that, by design, are shielded from or are insensitive to conventional standard model physics signals can be a powerful tool for multi-messenger astronomy. We consider the case in which high-energy astrophysical events produce intense bursts of exotic low-mass fields (ELFs), and we propose a novel model for the potential detection of an ELF signal on the basis of general assumptions. We estimate ELF signal amplitudes, delays, rates and distances of gravitational-wave sources to which global networks of atomic magnetometers(3-5) and atomic clocks(6-8) could be sensitive. We find that such precision quantum sensor networks can function as ELF telescopes to detect signals from sources that generate ELF bursts of sufficient intensity.
机译:精密量子传感器网络是多信使天文学的有用而可行的工具,用于检测超越标准模型理论的异国情调领域。例如,它们可以检测由高能天文学事件产生的异国情调的低质量领域的强烈爆发。源于同一天体物理活动的不同类信号的协调观察提供了丰富的信息天体物理过程(1)。到目前为止,多信使天文学具有来自已知基本力和标准模型颗粒的相关信号,如电磁辐射,中微子和引力波。现代物理的许多开放性问题表明,具有光量子的异国风情(带有大于1 EV C(-2)的质量)。量子传感器网络可用于搜索由标准型号(2)的理论预测的天体物理信号,该标准模型(2)解决了这些问题。在这里,我们表明,通过设计屏蔽或对传统标准模型物理信号屏蔽或不敏感的精密量子传感器网络可以是多信使天文学的强大工具。我们考虑到高能天体物理事件产生异国情调低质量领域(ELF)强烈爆发的情况,我们提出了一种基于一般假设的精灵信号的潜在检测的新模型。我们估计ELF信号幅度,延迟,速度和距离的原子磁力计(3-5)和原子钟(6-8)的全局网络可能是敏感的。我们发现这种精密量子传感器网络可以用作精灵望远镜,以检测来自产生足够强度的ELF突发的源的信号。

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