论文标题
用于在高红移处纠正紫外线的红移的处方
Prescriptions for Correcting Ultraviolet-Based Redshifts for Luminous Quasars at High Redshift
论文作者
论文摘要
高红移类星体通常由静止式紫外线(UV)发射线确定其红移。但是,这些线路,更具体地说是突出的C IV $λ1549$发射线,通常是蓝光的,与由静止框架光学发射线确定的红移相比,高度不确定的红移估计值。我们以$ 2.15 <z <3.70美元的价格呈现了18种发光类星体的近红外光谱,这使我们能够为这些来源获得可靠的系统性红移。连同44个类星体的档案样品的近红外光谱具有可比的亮度和红移,我们提供了用于校正基于紫外线的红移的处方。我们的处方将相对于系统性红移的速度偏移减少$ \ sim140 $ km s $ s $^{ - 1} $,并减少基于紫外线的红移的不确定性,而不是$ \ sim25 \%$ $ \ sim25 \%$,相对于当前用于确定此类值的最佳方法。我们还发现,从斯隆数字天空调查管道中确定的红移,我们的来源遭受了严重的不确定性的影响,这很容易缓解。我们讨论了我们的处方潜力改善基于紫外线的红移校正,鉴于具有近红外光谱的高红移类星体样本。
High-redshift quasars typically have their redshift determined from rest-frame ultraviolet (UV) emission lines. However, these lines, and more specifically the prominent C IV $λ1549$ emission line, are typically blueshifted yielding highly uncertain redshift estimates compared to redshifts determined from rest-frame optical emission lines. We present near-infrared spectroscopy of 18 luminous quasars at $2.15 < z < 3.70$ that allows us to obtain reliable systemic redshifts for these sources. Together with near-infrared spectroscopy of an archival sample of 44 quasars with comparable luminosities and redshifts, we provide prescriptions for correcting UV-based redshifts. Our prescriptions reduce velocity offsets with respect to the systemic redshifts by $\sim140$ km s$^{-1}$ and reduce the uncertainty on the UV-based redshift by $\sim25\%$ with respect to the best method currently used for determining such values. We also find that the redshifts determined from the Sloan Digital Sky Survey Pipeline for our sources suffer from significant uncertainties, which cannot be easily mitigated. We discuss the potential of our prescriptions to improve UV-based redshift corrections given a much larger sample of high redshift quasars with near-infrared spectra.