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首页> 外文期刊>The Astrophysical journal >QSO 0130–4021: A Third QSO Showing a Low Deuterium-to-Hydrogen Abundance Ratio
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QSO 0130–4021: A Third QSO Showing a Low Deuterium-to-Hydrogen Abundance Ratio

机译:QSO 0130–4021:第三个QSO显示出较低的氘氢富比

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We have discovered a third quasar absorption system which is consistent with a low deuterium-to-hydrogen abundance ratio, D/H = 3.4 × 10-5. The zabs ~ 2.8 partial Lyman limit system toward Q0130-4021 provides the strongest evidence to date against large D/H ratios because the H I absorption, which consists of a single high column density component with unsaturated high-order Lyman series lines, is readily modeled—a task which is more complex in other D/H systems. We have obtained 22 hr of spectra from the High-Resolution Echelle Spectrograph on the W. M. Keck Telescope, which allow a detailed description of the hydrogen. We see excess absorption on the blue wing of the H I Lyα line, near the expected position of deuterium. However, we find that deuterium cannot explain all of the excess absorption, and hence there must be contamination by additional absorption, probably H I. This extra H I can account for most or all of the absorption at the D position, and hence D/H = 0 is allowed. We find an upper limit of D/H ≤ 6.7 × 10-5 in this system, consistent with the value of D/H 3.4 × 10-5 deduced toward QSO 1009+2956 and QSO 1937-1009 by Burles and Tytler. This absorption system shows only weak metal-line absorption, and we estimate [Si/H] ≤ -2.6, indicating that the D/H ratio of the system is likely primordial. All four of the known high-redshift absorption-line systems simple enough to provide useful limits on D are consistent with D/H = 3.4 ± 0.25 × 10-5. Conversely, this QSO provides the third case which is inconsistent with much larger values.
机译:我们发现了第三个类星体吸收系统,它与低的氘氢富比D / H = 3.4×10-5一致。朝向Q0130-4021的zabs〜2.8部分莱曼极限系统提供了迄今为止针对大D / H比的最有力证据,因为HI吸收由单个高柱密度成分和不饱和高阶Lyman系列谱线组成,易于建模—在其他D / H系统中更为复杂的任务。我们从W. M. Keck望远镜上的高分辨率Echelle光谱仪获得了22 hr的光谱,可以对氢进行详细描述。我们在H ILyα谱线的蓝翼上看到了过量吸收,接近氘的预期位置。但是,我们发现氘不能解释所有过量吸收,因此必定会受到附加吸收(可能是H I)的污染。这种额外的HI可以解释D位置的大部分或全部吸收,因此是D / H = 0允许。我们发现此系统中D / H的上限为6.7×10-5,与Burles和Tytler对QSO 1009 + 2956和QSO 1937-1009推导的D / H 3.4×10-5值一致。该吸收系统仅显示弱金属线吸收,我们估计[Si / H]≤-2.6,表明该系统的D / H比很可能是原始的。足够简单以提供有用的D限制的所有四个已知的高红移吸收线系统都与D / H = 3.4±0.25×10-5一致。相反,此QSO提供了第三种情况,该情况与更大的值不一致。

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