首页> 外文期刊>The Astrophysical Journal. Letters >KECK SPECTROSCOPY OF FAINT 3 > z > 7 LYMAN BREAK GALAXIES: A HIGH FRACTION OF LINE EMITTERS AT REDSHIFT SIX
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KECK SPECTROSCOPY OF FAINT 3 > z > 7 LYMAN BREAK GALAXIES: A HIGH FRACTION OF LINE EMITTERS AT REDSHIFT SIX

机译:倾斜光谱> 3> z> 7莱曼断裂星系:在六轴漂移的情况下有很高的线发射率

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As Lya photons are scattered by neutral hydrogen, a change with redshift in the Lya equivalent width (EW) distribution of distant galaxies offers a promising probe of the degree of ionization in the intergalactic medium and hence when cosmic reionization ended. This simple test is complicated by the fact that Lya emission can also be affected by variations in the kinematics and dust content of the host galaxies. In the first paper in this series, we demonstrated both a luminosity- and redshift-dependent trend in the fraction of Lya emitters seen within color-selected "Lyman break" galaxies (LBGs) over the range 3 < z < 6; lower luminosity galaxies and those at higher redshift show an increased likelihood of strong emission. Here, we present the results from 12.5 hr exposures with the Keck DEIMOS spectrograph focused primarily on LBGs at z 6 which enable us to confirm the redshift dependence of line emission more robustly and to higher redshift than was hitherto possible. We find that 54% ± 11% of faint z ≌ 6 LBGs show strong ( W_(Lyα,0 > 25 A) emission, an increase of 55% from a sample of similarly luminous z ≌ 4 galaxies. With a total sample of 74 z ≌ 6 LBGs, we determine the luminosity-dependent Lya EW distribution. Assuming continuity in these trends to the new population of z ≌ 7 sources located with the Hubble WFC3/IR camera, we predict that unless the neutral fraction rises in the intervening 200 Myr, the success rate for spectroscopic confirmation using Lya emission should be high.
机译:由于Lya光子被中性氢散射,遥远星系的Lya当量宽度(EW)分布随红移而变化,为银河系间介质的电离度以及宇宙电离的结束提供了有希望的探针。这个简单的测试因Lya发射也可能受到宿主星系的运动学和粉尘含量变化的影响而变得复杂。在本系列的第一篇论文中,我们证明了在3 25 A)发射,比类似发光的z≌4星系的样本增加了55%。总样本为74 z≥6个LBG,我们确定了依赖于光度的Lya EW分布,假设这些趋势与使用哈勃WFC3 / IR摄像机定位的z≥7个新光源群的连续性,我们预测除非中间的200 Myr,使用Lya发射光谱确认的成功率应该很高。

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