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首页> 外文期刊>The Astrophysical journal >THE METALLICITY OF INTERGALACTIC GAS IN COSMIC VOIDS
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THE METALLICITY OF INTERGALACTIC GAS IN COSMIC VOIDS

机译:宇宙空隙中星际气体的金属性

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We have used the Hubble STIS and FUSE archives of ultraviolet spectra of bright AGNs to identify intergalactic Lyα absorbers in nearby (z ≤ 0.1) voids. From a parent sample of 651 Lyα absorbers, we identified 61 "void absorbers" located > 1.4 h_(70)~(-1) Mpc from the nearest L~* or brighter galaxy. Searching for metal absorption in high-quality (S/N > 10) spectra at the location of three diagnostic metal lines (O Ⅵ λ1032, C Ⅳ λ1548, Si Ⅲ λ1206), we detected no metal lines in any individual absorber, or in any group of absorbers using pixel co-addition techniques. The best limits on metal-line absorption in voids were set using four strong Lyα absorbers with N_(HⅠ) > 10~(14) cm~(-2), with 3 σ equivalent-width limits ranging from 8 mA (O Ⅵ) to 7-15 mA (C Ⅳ) and 4-10 mA (Si Ⅲ). Photoionization modeling yields metallicity limits Z < 10~(-1.8±0.4) Z_☉ from nondetections of C Ⅳ and O Ⅵ, some ~6 times lower than those seen in Lyα/O Ⅵ absorbers at z < 0.1. Although the void Lyα absorbers could be pristine material, considerably deeper spectra are required to rule out a universal metallicity floor produced by bursts of early star formation, with no subsequent star formation in the voids. The most consistent conclusion derived from these low-z results and similar searches at z = 3-5 is that galaxy filaments have increased their mean IGM metallicity by factors of 30-100 since z ~ 3.
机译:我们已经使用了明亮的AGN的紫外线光谱的哈勃STIS和FUSE档案来识别附近(z≤0.1)空隙中的星际Lyα吸收剂。从651个Lyα吸收剂的母体样本中,我们从最近的L〜*或更亮的星系中发现了61个“无效吸收剂”,其位置> 1.4 h_(70)〜(-1)Mpc。在3条诊断金属线(OⅥλ1032,CⅣλ1548,SiⅢλ1206)的位置搜索高质量(S / N> 10)光谱中的金属吸收,我们在任何单个吸收器中或在使用像素共加技术的任何吸收体组。使用四个N_(HⅠ)> 10〜(14)cm〜(-2)的强力Lyα吸收剂来设定空隙中金属线的最佳吸收极限,当量宽度的3σ极限为8 mA(OⅥ)至7-15 mA(CⅣ)和4-10 mA(SiⅢ)。光电离模型通过未检测到CⅣ和OⅥ产生金属极限Z <10〜(-1.8±0.4)Z_☉,比在Ly y / OⅥ吸收剂中z <0.1低约-6倍。尽管空隙中的Lyα吸收剂可能是原始材料,但仍需要更深的光谱才能排除由早期恒星形成的爆发所产生的通用金属底,而在空隙中没有随后的恒星形成。从这些低z结果和z = 3-5的相似搜索得出的最一致结论是,自z〜3以来,星系细丝的平均IGM金属度增加了30-100倍。

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