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Fine-structure constant constraints on dark energy. II. Extending the parameter space

机译:微结构恒定约束对暗能。 II。 扩展参数空间

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Astrophysical tests of the stability of fundamental couplings, such as the fine-structure constant a, are a powerful probe of new physics. Recently these measurements, combined with local atomic clock tests and Type Ia supernova and Hubble parameter data, were used to constrain the simplest class of dynamical dark energy models where the same degree of freedom is assumed to provide both the dark energy and (through a dimensionless coupling,., to the electromagnetic sector) the a variation. One caveat of these analyses was that it was based on fiducial models where the dark energy equation of state was described by a single parameter (effectively its present day value, w(0)). Here we relax this assumption and study broader dark energy model classes, including the Chevallier-Polarski-Linder and early dark energy parametrizations. Even in these extended cases we find that the current data constrains the coupling. at the 10(-6) level and w(0) to a few percent (marginalizing over other parameters), thus confirming the robustness of earlier analyses. On the other hand, the additional parameters are typically not well constrained. We also highlight the implications of our results for constraints on violations of the weak equivalence principle and improvements to be expected from forthcoming measurements with high-resolution ultrastable spectrographs.
机译:基本偶联稳定性的天体物理试验,如微结构常数A,是新物理学的强大探针。最近,这些测量与局部原子钟测试和IA型超新星和哈勃参数数据相结合,用于限制最简单的动态暗能模型,其中假设具有相同程度的自由度来提供深度和(通过无量纲)耦合,。,到电磁扇区)变型。这些分析的一个警告是它基于基于基准模型,其中通过单个参数描述了状态的暗能方程(有效地是其当前值,W(0))。在这里,我们可以放松这种假设并研究更广泛的暗能模型类,包括Chevallier-Polarski-Linder和早期暗能量参数化。即使在这些延长案例中,我们也发现当前数据限制耦合。在10(-6)水平和W(0)到几个百分点(在其他参数上边缘化),从而确认较早分析的稳健性。另一方面,附加参数通常不受限制。我们还突出了我们对违反等效原则的限制的影响,并从高分辨率的高分辨率光谱仪开始预期的较弱等价原则和改进。

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