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Testing the universality of free fall with rubidium and ytterbium in a very large baseline atom interferometer

机译:在非常大的基线原子干涉仪中测试with和free自由落体的普遍性

摘要

We propose a very long baseline atom interferometer test of Einstein's equivalence principle (EEP) with ytterbium and rubidium extending over 10m of free fall. In view of existing parametrizations of EEP violations, this choice of test masses significantly broadens the scope of atom interferometric EEP tests with respect to other performed or proposed tests by comparing two elements with high atomic numbfers. In the first step, our experimental scheme will allow us to reach an accuracy in the Eotvos ratio of 7 . 10(-13). This achievement will constrain violation scenarios beyond our present knowledge and will represent an important milestone for exploring a variety of schemes for further improvements of the tests as outlined in the paper. We will discuss the technical realisation in the new infrastructure of the Hanover Institute of Technology (HITec) and give a short overview of the requirements needed to reach this accuracy. The experiment will demonstrate a variety of techniques, which will be employed in future tests of EEP, high-accuracy gravimetry and gravity gradiometry. It includes operation of a force-sensitive atom interferometer with an alkaline earth-like element in free fall, beam splitting over macroscopic distances and novel source concepts.
机译:我们建议使用爱因斯坦的等效原理(EEP)对with和and延伸超过10m的自由落体进行非常长的基线原子干涉仪测试。考虑到现有的违反EEP的参数化,通过比较两个具有高原子数的元素,相对于其他已执行或建议的测试,测试质量的选择显着拓宽了原子干涉EEP测试的范围。第一步,我们的实验方案将使我们的Eotvos比达到7的精度。 10(-13)。这项成就将使违规情况超出我们现有的知识范围,并且将成为探索各种方案以进一步改进本文所述的测试的重要里程碑。我们将讨论汉诺威技术学院(HITec)的新基础架构中的技术实现,并简要概述达到此精度所​​需的要求。该实验将演示多种技术,这些技术将用于EEP,高精度重力法和重力梯度法的未来测试中。它包括一个带有类似于碱土元素的自由落体的力敏原子干涉仪的操作,在宏观距离上的光束分裂以及新颖的光源概念。

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