首页> 外文期刊>The Astrophysical journal >CONFIRMATION OF A STEEP LUMINOSITY FUNCTION FOR Lyα EMITTERS AT z = 5.7: A MAJOR COMPONENT OF REIONIZATION*
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CONFIRMATION OF A STEEP LUMINOSITY FUNCTION FOR Lyα EMITTERS AT z = 5.7: A MAJOR COMPONENT OF REIONIZATION*

机译:确认在z = 5.7时Lyα发射体的陡峭光度函数:电离的主要成分*

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We report the first direct and robust measurement of the faint-end slope of the Lyα emitter (LAE) luminosity function (LF) at z = 5.7. Candidate LAEs from a low-spectral-resolution blind search with IMACS on Magellan-Baade were targeted at higher resolution to distinguish high-redshift LAEs from foreground galaxies. All but 2 of our 42 single-emission-line systems have flux ergs s?1 cm?2, making these the faintest emission-lines observed for a z = 5.7 sample with known completeness, an essential property for determining the faint end slope of the LAE LF. We find 13 LAEs as compared to 29 foreground galaxies, in very good agreement with the modeled foreground counts predicted in Dressler et al. that had been used to estimate a faint-end slope of α = ?2.0 for the LAE LF. A 32% LAE fraction, LAE/(LAE+foreground) within the flux interval ?ergs s?1 cm?2 constrains the faint end slope of the LF to (1σ). We show how this steep LF should provide, to the limit of our observations, ?16, more than 20% of the flux necessary to maintain ionization at z = 5.7, with a factor of 10 extrapolation in flux reaching more than 50%. This is in addition to the comparable contribution by brighter Lyman Break Galaxies ?18. We suggest that this bodes well for a sufficient supply of Lyman continuum photons by similar, low-mass star-forming galaxies within the reionization epoch at , only 250 Myr earlier.
机译:我们报告了在z = 5.7时Lyα发射器(LAE)发光度函数(LF)的微弱末端斜率的首次直接且可靠的测量。通过在麦哲伦-贝德(Magellan-Baade)上使用IMACS进行的低光谱分辨率盲搜索的候选LAE,以更高的分辨率为目标,以将高红移LAE与前景星系区分开。我们的42条单发射谱线系统中除2之外的所有谱线都具有erg s?1 cm?2,这使得它们在az = 5.7的样品中观察到的最细的发射谱线具有已知的完整性,这是确定谱线微弱的最终斜率的基本特性。 LAE LF。与29个前景星系相比,我们发现了13个LAE,与Dressler等人预测的建模前景数非常吻合。用来估计LAE LF的微弱斜率α=?2.0。在通量间隔为sergs?1 cm?2的情况下,LAE / LAE /(LAE +前景)为32%,将LF的微弱的末端斜率限制为(1σ)。我们展示了这个陡峭的低频如何在我们的观察范围之内提供?16,以将电离保持在z = 5.7所需的通量增加20%以上,将通量的10倍外推达到50%以上。这是更明亮的莱曼断裂星系的可比贡献[18]。我们建议这预示着在离电离时代仅250 Myr的时间里,类似的低质量恒星形成星系将有足够的莱曼连续光子供应。

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