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GRASIAN:为即将进行的原子引力量子态首次演示塑造并表征冷氢和氘束。

GRASIAN: shaping and characterization of the cold hydrogen and deuterium beams for the forthcoming first demonstration of gravitational quantum states of atoms.

作者信息

Killian Carina, Blumer Philipp, Crivelli Paolo, Hanski Otto, Kloppenburg Daniel, Nez François, Nesvizhevsky Valery, Reynaud Serge, Schreiner Katharina, Simon Martin, Vasiliev Sergey, Widmann Eberhard, Yzombard Pauline

机构信息

Stefan Meyer Institute for Subatomic Physics, Austrian Academy of Sciences, Dominikanerbastei 16, 1010 Vienna, Austria.

Institute for Particle Physics and Astrophysics, ETH, 8093 Zurich, Switzerland.

出版信息

Eur Phys J D At Mol Opt Phys. 2024;78(10):132. doi: 10.1140/epjd/s10053-024-00916-5. Epub 2024 Oct 29.

Abstract

A low energy particle confined by a horizontal reflective surface and gravity settles in gravitationally bound quantum states. These gravitational quantum states (GQS) were so far only observed with neutrons. However, the existence of GQS is predicted also for atoms. The GRASIAN collaboration pursues the first observation of GQS of atoms, using a cryogenic hydrogen beam. This endeavor is motivated by the higher densities, which can be expected from hydrogen compared to neutrons, the easier access, the fact that GQS were never observed with atoms and the accessibility to hypothetical short-range interactions. In addition to enabling gravitational quantum spectroscopy, such a cryogenic hydrogen beam with very low vertical velocity components-a few cm , can be used for precision optical and microwave spectroscopy. In this article, we report on our methods developed to reduce background and to detect atoms with a low horizontal velocity, which are needed for such an experiment. Our recent measurement results on the collimation of the hydrogen beam to 2 mm, the reduction of background and improvement of signal-to-noise and finally our first detection of atoms with velocities are presented. Furthermore, we show calculations, estimating the feasibility of the planned experiment and simulations which confirm that we can select vertical velocity components in the order of cm .

摘要

一个被水平反射面和重力限制的低能粒子会处于引力束缚的量子态。到目前为止,这些引力量子态(GQS)仅在中子中被观测到。然而,原子中也预测存在GQS。GRASIAN合作团队利用低温氢束首次尝试观测原子的GQS。这一努力的动机在于,与中子相比,氢有望具有更高的密度,更容易获取,而且从未在原子中观测到GQS以及能够探测到假设的短程相互作用。除了实现引力量子光谱学之外,这样一束垂直速度分量非常低(几厘米每秒)的低温氢束可用于精密光学和微波光谱学。在本文中,我们报告了为减少背景以及探测具有低水平速度的原子而开发的方法,这些是此类实验所必需的。我们展示了近期关于将氢束准直到2毫米、减少背景以及改善信噪比的测量结果,最终还展示了我们首次对速度为……的原子的探测。此外,我们给出了计算结果,评估了计划实验的可行性,并通过模拟证实我们能够选择厘米每秒量级的垂直速度分量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58f6/11522151/beb1908f0d42/10053_2024_916_Fig1_HTML.jpg

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