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首页> 外文期刊>The Astrophysical journal >GEMINI-SOUTH + FLAMINGOS DEMONSTRATION SCIENCE: NEAR-INFRARED SPECTROSCOPY OF THE z = 5.77 QUASAR SDSS J083643.85+005453.3
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GEMINI-SOUTH + FLAMINGOS DEMONSTRATION SCIENCE: NEAR-INFRARED SPECTROSCOPY OF THE z = 5.77 QUASAR SDSS J083643.85+005453.3

机译:双子座+火烈鸟演示科学:z的近红外光谱= 5.77 QUASAR SDSS J083643.85 + 005453.3

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We report an infrared 1-1.8 μm (J + H-band), low-resolution (R = 450) spectrogram of the highest redshift radio-loud quasar currently known, SDSS J083643.85 + 005453.3, obtained during the spectroscopic commissioning run of the FLAMINGOS multiobject, near-IR spectrograph at the 8 m Gemini-South Observatory. These data show broad emission from both C Ⅳ λ1549 and C Ⅲ] λ1909, with strengths comparable to lower redshift quasar composite spectra. The implication is that there is substantial enrichment of the quasar environment, even at times less than a billion years after the big bang. The redshift derived from these features is z = 5.774 +-0.003, more accurate and slightly lower than the z = 5.82 reported in the discovery paper based on the partially absorbed Lyα emission line. The infrared continuum is significantly redder than lower redshift quasar composites. Filling the spectrum from 1.0 to 1.7 μm with a power law f_ν ∝ ν~(-α), the derived power-law index is α = 1.55 compared to the average continuum spectral index <α> = 0.44 derived from the first Sloan Digital Sky Survey composite quasar. Assuming an SMC-like extinction curve, we infer a color excess of E(B-V) = 0.09 +- 0.01. Only ≈6% of quasars in the optically selected Sloan Digital Sky Survey show comparable levels of dust reddening.
机译:我们报告了目前已知的最高红移无线电波类星体SDSS J083643.85 + 005453.3的红外1-1.8μm(J + H波段),低分辨率(R = 450)光谱图,该光谱图是在2007年的光谱调试运行中获得的双子座南天文台8 m处的FLAMINGOS多目标近红外光谱仪。这些数据表明,CⅣλ1549和CⅢ]λ1909都发出了宽广的发射光,其强度可与较低的红移类星体复合光谱相媲美。这意味着类星体环境有了实质性的丰富,甚至在大爆炸发生后不到十亿年的时候。从这些特征得出的红移为z = 5.774 + -0.003,比基于部分吸收的Lyα发射谱线的发现论文中报道的z = 5.82更为精确,并且略低。红外连续体比低红移类星体复合材料显着泛红。用幂律f_ν∝ν〜(-α)填充从1.0到1.7μm的光谱,与从第一个斯隆数字天空得出的平均连续谱索引<α> = 0.44相比,导出的幂律指数为α= 1.55调查复合类星体。假设像SMC一样的消光曲线,我们推断出颜色的过量E(B-V)= 0.09 +-0.01。在光学选择的斯隆数字天空调查中,只有约6%的类星体显示出相当水平的粉尘变红。

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