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首页> 外文期刊>The Astrophysical Journal. Letters >Probing fundamental constant evolution with redshifted conjugate-satellite oh lines
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Probing fundamental constant evolution with redshifted conjugate-satellite oh lines

机译:用红移共轭卫星oh线探测基本恒定演化

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We report Westerbork Synthesis Radio Telescope and Arecibo Telescope observations of the redshifted satellite OH18cm lines at z ~ 0.247 toward PKS 1413+135. The "conjugate" nature of these lines, with one line in emission and the other in absorption, but with the same shape, implies that the lines arise in the same gas. The satellite OH18cm line frequencies also have different dependences on the fine structure constant α, the proton-electron mass ratio μ = m_p /m_e, and the proton gyromagnetic ratio g_p. Comparisons between the satellite line redshifts in conjugate systems can hence be used to probe changes in α, μ, and g_p, with few systematic effects. The technique yields the expected null result when applied to Cen.A, a nearby conjugate satellite system. For the z ~ 0.247 system toward PKS 1413+135, we find, on combining results from the two telescopes, that (ΔG/G) = (-1.18 ± 0.46) × 10~(-5) (weighted mean), where G = g_p (μα ~2)_(1.85); this is tentative evidence (with 2.6 σ significance, or at 99.1% confidence) for a smaller value of α, μ, and/or g_p at z ~ 0.247, i.e., at a lookback time of ~ 2.9 Gyr. If we assume that the dominant change is in α, this implies (Δα/α) = (-3.1 ± 1.2) × 10_(-6). We find no evidence that the observed offset might be produced by systematic effects, either due to observational or analysis procedures, or local conditions in the molecular cloud.
机译:我们报告了Westerbork合成射电望远镜和Arecibo望远镜在z〜0.247处向PKS 1413 + 135的红移卫星OH18cm线的观测结果。这些管线的“共轭”性质,一个发射线,另一个吸收线,但形状相同,这意味着这些线在相同的气体中出现。卫星OH18cm线频率还取决于精细结构常数α,质子电子质量比μ= m_p / m_e和质子旋磁比g_p。因此,共轭系统中卫星线红移之间的比较可用于探测α,μ和g_p的变化,而几乎没有系统影响。当将该技术应用于附近的共轭卫星系统Cen.A时,会产生预期的无效结果。对于朝向PKS 1413 + 135的z〜0.247系统,结合两个望远镜的结果,我们发现(ΔG/ G)=(-1.18±0.46)×10〜(-5)(加权平均值),其中G = g_p(μα〜2)_(1.85);这是在z〜0.247,即回溯时间为2.9 Gyr时,较小的α,μ和/或g_p值的初步证据(显着性为2.6σ,或置信度为99.1%)。如果我们假设主要变化在α中,则意味着(Δα/α)=(-3.1±1.2)×10 _(-6)。我们没有证据表明观察到的偏移可能是由于观测或分析程序或分子云中的局部条件引起的系统性影响而产生的。

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