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Investigating a null test of the Einstein Equivalence Principle with clocks at different solar gravitational potentials

机译:研究具有不同太阳引力电势的时钟的爱因斯坦等效原理的无效检验

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The Einstein Equivalence Principle (EEP) requires that clocks in free fall, when observed by other clocks in free fall, show no frequency variations. To some approximation, clocks on the surface of the Earth can be considered freely falling in the solar gravitational potential, and one would expect to find no frequency variations between the clocks as the Earth's rotation modulates the potential experienced by each clock. We investigate the attainable limits of a search for such a frequency variation using satellites, parameterized as a fraction of the expected differential gravitational redshift of a clock pair not in free fall. Under the most optimistic of assumptions, a 3-sigma limit to the EEP violation of 10-4 may be possible in the future, although the uncertainties we present are an order of magnitude higher, with an upper limit to an EEP violation of <;10-3.
机译:爱因斯坦等效原理(EEP)要求自由落体的时钟在被其他自由落体时钟观察时,不显示频率变化。近似地,可以认为地球表面的时钟自由落在太阳重力中,人们期望在时钟之间没有发现频率变化,因为地球的自转调制了每个时钟所经历的电势。我们调查了使用卫星搜索此类频率变化的可达到极限,这些参数被参数化为非自由落体时钟对的预期差分引力红移的一部分。在最乐观的假设下,将来可能会出现EEP违反10-4的3σ限制,尽管我们目前存在的不确定性要高一个数量级,EEP违反的上限是<; 10-3。

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