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In Search of the Ideal Systems to Constrain the Variation of Fundamental Constants

机译:寻找理想的系统来约束基本常数的变化

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It has been realised in the last few years that strong constraints on the time-variations of dimensionless fundamental constants of physics can be derived at any redshift from QSO absorption line systems. Variations of the fine structure constant, α, the proton-to-electron mass ratio, μ, or the combination, x = α~2g_p/μ, where g_p is the proton gyromagnetic factor, have been constrained. However, except for α, the number of lines of sight where these measurements can be performed is limited. In particular the number of known molecular and 21 cm absorbers is small. Our group has started several surveys to search for these systems. We present here a summary of the results obtained till now. In the course of these surveys, we discovered a z ~ 3 system towards J133724.69+315254.55 which is close to "ideal" to constrain the variation of fundamental constants as several constants can be constrained using the same system, namely μ and x = α~2G_p/μ. In particular the constraint on x is particularly strong with Δx/x = -(1.9 ± 1.5) × 10~(-6). If combined with the constraint on μ derived recently, this yields a 3σ upper limit on the variation of α at z ~ 3 of Δα/α < 2.2×10~(-6). We note that the quasar happens to be located in the northern part of the sky. Therefore the variations along the so-called "Australian dipole", if any, seem to be restricted to a very specific direction in the universe.
机译:在最近几年中已经认识到,从QSO吸收谱线系统的任何红移,都可以得出对无量纲物理基本常数的时变的强大约束。精细结构常数α,质子电子质量比μ或组合x =α〜2g_p /μ(其中g_p是质子旋磁因子)的变化已受到约束。但是,除了α以外,可以进行这些测量的视线数量是有限的。特别地,已知的分子吸收器和21cm吸收器的数量很少。我们的小组已开始进行几次调查以搜索这些系统。我们在这里总结到目前为止所获得的结果。在这些调查过程中,我们发现朝向J133724.69 + 315254.55的z〜3系统接近于“理想”,以限制基本常数的变化,因为可以使用同一系统来约束多个常数,即μ和x =α 〜2G_p /μ。特别是当Δx/ x =-(1.9±1.5)×10〜(-6)时,对x的约束特别强。如果结合最近得出的对μ的约束,则在z〜3处αα/α<2.2×10〜(-6)时α变化的上限为3σ。我们注意到类星体恰好位于天空的北部。因此,沿着所谓的“澳大利亚偶极子”(如果有的话)的变化似乎仅限于宇宙中非常特定的方向。

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