论文标题

来自原子干涉法中远程力的破坏性

Decoherence from Long-Range Forces in Atom Interferometry

论文作者

Kunjummen, Jonathan, Carney, Daniel, Taylor, Jacob M.

论文摘要

原子干涉仪提供了一种强大的方法,可以实现量子相干系统,其时空范围越来越宏观。这些系统为各种基本物理学的新型测试提供了机会,包括使用长时间的降落时间,微重力进行重力修饰的超轻暗物质搜索和重力修饰的测试。但是,随着实验具有较长的自由跌落时期并对较小的背景影响敏感,关键问题开始出现关于未来原子干涉仪实验的基本限制。我们研究了由于具有远距离力量的环境颗粒(例如引力浴场和带电的宇宙射线)的环境颗粒浴而导致的难以屏幕背景的原子相干性的影响。我们的方法 - 在海森伯格图片中进行原子运动的工作 - 使可行的实验设备适当地包含,并清楚地显示了如何处理远程力量和首选的框架歧义。我们发现,对于下一代干涉仪,这些潜在的背景可能可以忽略不计,因为从暗物质颗粒的背景浴缸中对重力分解的侵略性估计值在几年的顺序上给出了反谐度的时间尺度。

Atom interferometers provide a powerful means of realizing quantum coherent systems with increasingly macroscopic extent in space and time. These systems provide an opportunity for a variety of novel tests of fundamental physics, including ultralight dark matter searches and tests of modifications of gravity, using long drop times, microgravity. However, as experiments operate with longer periods of free fall and become sensitive to smaller background effects, key questions start to emerge about the fundamental limits to future atom interferometery experiments. We study the effects on atomic coherence from hard-to-screen backgrounds due to baths of ambient particles with long-range forces, such as gravitating baths and charged cosmic rays. Our approach - working in the Heisenberg picture for the atomic motion - makes proper inclusion of the experimental apparatus feasible and clearly shows how to handle long-range forces and preferred frame ambiguities. We find that these potential backgrounds are likely negligible for the next generation of interferometers, as aggressive estimates for the gravitational decoherence from a background bath of dark matter particles gives a decoherence timescale on the order of years.

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