论文标题

重力和DILATON场的光传播和原子干涉法

Light propagation and atom interferometry in gravity and dilaton fields

论文作者

Di Pumpo, Fabio, Friedrich, Alexander, Geyer, Andreas, Ufrecht, Christian, Giese, Enno

论文摘要

暗物质或违反爱因斯坦等效原理会影响原子的运动,其内部状态以及电磁场,从而在原子检测器的信号中引起签名。为了建模这种新物理学,我们介绍了Dilaton场并研究了用于操纵光脉冲原子干涉仪中的原子的光的经过修改的传播。它们的干扰信号由物质与重力和Dilaton的耦合所占据主导地位。即使电磁场有助于该相,也没有观察到额外的DILATON依赖性效应。但是,重力的传播通过改良的动量传递及其有限的速度进入。为了进行说明,我们讨论了光传播和DILATON对不同原子间变量计量学设置的影响,包括渐变计,等效原理测试和暗物质检测。

Dark matter or violations of the Einstein equivalence principle influence the motion of atoms, their internal states as well as electromagnetic fields, thus causing a signature in the signal of atomic detectors. To model such new physics, we introduce dilaton fields and study the modified propagation of light used to manipulate atoms in light-pulse atom interferometers. Their interference signal is dominated by the matter's coupling to gravity and the dilaton. Even though the electromagnetic field contributes to the phase, no additional dilaton-dependent effect can be observed. However, the light's propagation in gravity enters via a modified momentum transfer and its finite speed. For illustration, we discuss effects from light propagation and the dilaton on different atom-interferometric setups, including gradiometers, equivalence principle tests, and dark matter detection.

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