论文标题

使用接地旋转条纹扫描的两光子干涉测量法

Astrometry in two-photon interferometry using Earth rotation fringe scan

论文作者

Chen, Zhi, Nomerotski, Andrei, Slosar, Anže, Stankus, Paul, Vintskevich, Stephen

论文摘要

如果可以向他们提供量子机械纠缠的量子对来源,则可以将光学干涉仪在站点之间的相位稳定的光学连接,从而实现长基线。我们开发了这一想法的新变化,提出从两个不同天文来源的光子可以在两个解耦站干扰。然后可以通过后处理或仅需要在站点之间的缓慢,经典的连接来计算干扰产品。在这项工作中,我们研究了这种方法的实际可行性。我们开发了一种用于地球旋转条纹扫描技术的贝叶斯分析方法,并表明,在高信噪比的极限下,它从简单的Fisher基质分析中重现了结果。我们确定北半球的候选楼梯对,可以应用此技术。有两个望远镜的收集区为$ \ sim 2 $ m $^2 $,我们可以在几个小时的观测值中,以$ \ sim 10 \,μ$的精度来检测条纹和测量源的天体分离,并与先前的估计达成一致。

Optical interferometers may not require a phase-stable optical link between the stations if instead sources of quantum-mechanically entangled pairs could be provided to them, enabling long baselines. We developed a new variation of this idea, proposing that photons from two different astronomical sources could be interfered at two decoupled stations. Interference products can then be calculated in post-processing or requiring only a slow, classical connection between stations. In this work, we investigated practical feasibility of this approach. We developed a Bayesian analysis method for the earth rotation fringe scanning technique and showed that in the limit of high signal-to-noise ratio it reproduced the results from a simple Fisher matrix analysis. We identify candidate stair pairs in the northern hemisphere, where this technique could be applied. With two telescopes with an effective collecting area of $\sim 2$ m$^2$, we could detect fringing and measure the astrometric separation of the sources at $\sim 10\,μ$as precision in a few hours of observations, in agreement with previous estimates.

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