论文标题

用花岗岩光谱仪对弹跳中子的重力量子状态操纵

Manipulation of gravitational quantum states of a bouncing neutron with the GRANIT spectrometer

论文作者

Clément, Benoit, Baeßler, Stefan, Nesvizhevsky, Valery V., Perry, Emily, Pignol, Guillaume, Pioquinto, Jason A., Protasov, Konstantin V., Rebreyend, Dominique, Roulier, Damien, Shen, Lingnan, Strelkov, Alexander V., Vezzu, Francis

论文摘要

弹跳中子是可以在量子框架中研究重力的罕见系统之一。为此,至关重要的是能够选择一些特定的重力量子态(GQ)。 GRANIT设备是连接到超热UCN源的第一个物理实验。我们报告了为该仪器开发的方法,显示了如何使用镜子和吸收缝隙之间的一步来偏爱特定的GQ。我们通过增加吸收器粗糙度振幅来探索GQS分离效率的提高,并发现它是可行的,但需要高调节精度。我们还量化了吸收缝隙的传输,从而导致中子垂直波函数的空间延伸$ z_0 = \ hbar^{2/3} \ left(2m^2g \ right)

The bouncing neutron is one of the rare system where gravity can be studied in a quantum framework. To this end it is crucial to be able to select some specific gravitational quantum state (GQS). The GRANIT apparatus is the first physics experiment connected to a superthermal helium UCN source. We report on the methods developed for this instrument showing how specific GQS can be favored using a step between mirrors and an absorbing slit. We explore the increase of GQS separation efficiency by increasing the absorber roughness amplitude, and find it is feasible but requires a high adjustment precision. We also quantify the transmission of the absorbing slit leading to a measurement of the spatial extension of the neutron vertical wave function $z_0 = \hbar^{2/3}\left(2m^2g\right)^{-1/3} = 5.9\pm0.3\,μ$m.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源