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Atomic Transition Frequencies, Isotope Shifts, and Sensitivity to Variation of the Fine Structure Constant for Studies of Quasar Absorption Spectra

机译:用于研究类星体吸收光谱的原子跃迁频率,同位素位移和对精细结构常数变化的敏感性

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Theories unifying gravity with other interactions suggest spatial and temporal variation of fundamental "constants" in the Universe. A change in the fine structure constant, α = e~2/hc, could be detected via shifts in the frequencies of atomic transitions in quasar absorption systems. Recent studies using 140 absorption systems from the Keck telescope and 153 from the Very Large Telescope, suggest that α varies spatially [61]. That is, in one direction on the sky α seems to have been smaller at the time of absorption, while in the opposite direction it seems to have been larger.To continue this study we need accurate laboratory measurements of atomic transition frequencies. The aim of this paper is to provide a compilation of transitions of importance to the search for α variation. They are El transitions to the ground state in several different atoms and ions, with wavelengths ranging from around 900-6000 A, and require an accuracy of better than 10~(-4) A. We discuss isotope shift measurements that are needed in order to resolve systematic effects in the study. The coefficients of sensitivity to α-variation (q) are also presented.
机译:结合重力和其他相互作用的理论表明,宇宙中基本“常数”的时空变化。精细结构常数α= e〜2 / hc的变化可以通过类星体吸收系统中原子跃迁频率的变化来检测。最近使用Keck望远镜的140个吸收系统和甚大望远镜的153个系统的研究表明,α在空间上是变化的[61]。也就是说,在吸收时,天空的一个方向上的α似乎较小,而在相反的方向上的α似乎较大。要继续这项研究,我们需要精确的实验室测量原子跃迁频率。本文的目的是提供对搜索α变化的重要转变的汇编。它们是在几种不同原子和离子中向基态转变的El跃迁,波长范围在900-6000 A左右,要求的准确度优于10〜(-4)A。我们讨论了按顺序需要进行的同位素位移测量解决研究中的系统性影响。还介绍了对α变量(q)的敏感度系数。

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    School of Physics, University of New South Wales, Sydney, NSW 2052, Australia;

    School of Physics, University of New South Wales, Sydney, NSW 2052, Australia;

    School of Physics, University of New South Wales, Sydney, NSW 2052, Australia;

    School of Physics, University of New South Wales, Sydney, NSW 2052, Australia;

    School of Physics, University of New South Wales, Sydney, NSW 2052, Australia;

    Petersburg Nuclear Physics Institute, Gatchina, 188300, Russia;

    Petersburg Nuclear Physics Institute, Gatchina, 188300, Russia;

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