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首页> 外文期刊>The Astrophysical journal >Hubble Space Telescope Advanced Camera for Surveys Observations of the z = 6.42 Quasar SDSS J1148+5251: A Leak in the Gunn-Peterson Trough*
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Hubble Space Telescope Advanced Camera for Surveys Observations of the z = 6.42 Quasar SDSS J1148+5251: A Leak in the Gunn-Peterson Trough*

机译:哈勃太空望远镜高级相机,用于观测z = 6.42的类星体SDSS J1148 + 5251:Gunn-Peterson槽泄漏*

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摘要

The Hubble Space Telescope Advanced Camera for Surveys has been used to obtain a narrowband image of the weak emission peak seen at λ = 7205 ? in the Gunn-Peterson Lyβ absorption trough of the highest redshift quasar, SDSS J1148+5251. The emission looks perfectly pointlike; there is no evidence for the intervening galaxy that we previously suggested might be contaminating the quasar spectrum. We derive a more accurate astrometric position for the quasar in the two filters and see no indication of gravitational lensing. We conclude that the light in the Lyβ trough is leaking through two unusually transparent, overlapping windows in the intergalactic medium (IGM) absorption, one in the Lyβ forest at z ~ 6 and one in the Lyα forest at z ~ 5. If there are significant optical depth variations on velocity scales small compared with our spectral resolution (~150 km s-1), the Lyα trough has the potential to become more transparent for a given Lyβ optical depth because the Lyα transmission is extremely sensitive to the most transparent sight lines in the IGM while Lyβ is sensitive to sight lines with a broader range of optical depths. Such variations can only strengthen our conclusion that the fraction of neutral hydrogen in the IGM increases dramatically at z 6. We argue that the transmission in the Lyβ trough is not only a more sensitive measure of the neutral fraction than is Lyα but that it also provides a less biased estimator of the neutral hydrogen fraction than does the Lyα transmission.
机译:哈勃太空望远镜先进的测量相机已经用于获取在λ= 7205?处看到的微弱发射峰的窄带图像。最高红移类星体SDSS J1148 + 5251的Gunn-PetersonLyβ吸收槽中。发射看起来很像点。没有证据表明我们先前建议的介入星系可能会污染类星体光谱。我们得出了两个滤镜中类星体的更准确的天体位置,并且没有看到引力透镜的迹象。我们得出的结论是,Lyβ槽中的光正在通过银河间介质(IGM)吸收中的两个异常透明,重叠的窗口泄漏,一个在z〜6处在Lyβ林中,另一个在z〜5处在Lyα林中。与我们的光谱分辨率(〜150 km s-1)相比,速度尺度上的光学深度变化显着小,对于给定的Lyβ光学深度,Lyα槽有可能变得更加透明,因为Lyα透射对最透明的视点极为敏感Lyβ对IGM中的视线敏感,而对视线具有较宽的光学深度范围。这种变化只能加强我们的结论,即IGM中中性氢的分数在z> 6时会急剧增加。我们认为,Lyβ谷中的传递不仅比Lyα更敏感地测量了中性分数,而且还表明与Lyα传输相比,提供的中性氢分数估算值偏差较小。

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