论文标题

强烈的Mg II和Fe II吸收剂在2.2 <z <6.0

Strong Mg II and Fe II Absorbers at 2.2 < z < 6.0

论文作者

Zou, Siwei, Jiang, Linhua, Shen, Yue, Wu, Jin, Bañados, Eduardo, Fan, Xiaohui, Ho, Luis C., Riechers, Dominik A., Venemans, Bram, Vestergaard, Marianne, Walter, Fabian, Wang, Feige, Willott, Chris J., Joshi, Ravi, Wu, Xue-Bing, Yang, Jinyi

论文摘要

我们介绍了一项研究,在$ z> 5.7 $的31种发光类星体的近红外光谱中进行了强大的干预吸收系统。用{\ it gemini} gnirs获得了类星体光谱,可提供连续波长覆盖范围从$ \ sim $ 0.9到$ \ sim $ \ sim $ 2.5 $μ$ m。我们检测到32个强MG II双打吸收器,具有静止框架等效宽度$ W_R $($ \ lambda2796 $)$> 1.0 $ÅAT$ 2.2 <z <6.0 $。在$ \ sim 1600-2600 $Å中,至少两条相关的Fe II吸收线证实了每个MG II吸收器。我们发现,强fe II的MG II吸收剂的共同线密度($ DN/DX $)在$ z> 3 $时降低了更高的红移,这与先前的研究一致。与在2 $ <z <$ 4的阻尼LY $α$系统中检测到的强MG II吸收剂相比,我们的吸收剂可能饱和较少,并且显示出更大的休息框速度宽度。这表明我们吸收剂所追踪的气体可能受到银河系超级风的影响。我们分析了类星体的近红外图像{\ it Hubble Space望远镜},并为我们的强吸收器确定可能相关的星系。 There are a maximum of two galaxy candidates found within 5" radius of each absorber. The median F105W-band magnitude of these galaxy candidates is 24.8 mag, which is fainter than the $L^*$ galaxy luminosity at $z\sim$ 4. By using our observed $dN/dX$ of strong Mg II absorbers and galaxy candidates median luminosity, we suggest that at high redshift,强大的MG II吸收器往往具有更令人不安的环境,但光环尺寸比$ z <$ 1的尺寸较小。

We present a study of strong intervening absorption systems in the near-IR spectra of 31 luminous quasars at $z>5.7$. The quasar spectra were obtained with {\it Gemini} GNIRS that provide continuous wavelength coverage from $\sim$0.9 to $\sim$2.5 $μ$m. We detect 32 strong Mg II doublet absorbers with rest-frame equivalent width $W_r$ ($\lambda2796$) $>1.0$ Åat $2.2 < z < 6.0$. Each Mg II absorber is confirmed by at least two associated Fe II absorption lines in the rest-frame wavelength range of $\sim 1600-2600$ Å. We find that the comoving line density ($dN/dX$) of the strong Fe II-bearing Mg II absorbers decreases towards higher redshift at $z>3$, consistent with previous studies. Compared with strong Mg II absorbers detected in damped Ly$α$ systems at 2 $<z<$ 4, our absorbers are potentially less saturated and show much larger rest-frame velocity widths. This suggests that the gas traced by our absorbers are potentially affected by galactic superwinds. We analyze the {\it Hubble Space Telescope} near-IR images of the quasars and identify possible associated galaxies for our strong absorbers. There are a maximum of two galaxy candidates found within 5" radius of each absorber. The median F105W-band magnitude of these galaxy candidates is 24.8 mag, which is fainter than the $L^*$ galaxy luminosity at $z\sim$ 4. By using our observed $dN/dX$ of strong Mg II absorbers and galaxy candidates median luminosity, we suggest that at high redshift, strong Mg II absorbers tend to have a more disturbed environment but smaller halo size than that at $z <$ 1.

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