...
首页> 外文期刊>The Astrophysical journal >FARADAY ROTATION FROM MAGNESIUM?II ABSORBERS TOWARD POLARIZED BACKGROUND RADIO SOURCES
【24h】

FARADAY ROTATION FROM MAGNESIUM?II ABSORBERS TOWARD POLARIZED BACKGROUND RADIO SOURCES

机译:从镁?II吸收剂向极化背景无线电源的法拉第旋转

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Strong singly ionized magnesium (Mg II) absorption lines in quasar spectra typically serve as a proxy for intervening galaxies along the line of sight. Previous studies have found a correlation between the number of these Mg II absorbers and the Faraday rotation measure (RM) at ≈5?GHz. We cross-match a sample of 35,752 optically identified non-intrinsic Mg II absorption systems with 25,649 polarized background radio sources for which we have measurements of both the spectral index and RM at 1.4?GHz. We use the spectral index to split the resulting sample of 599 sources into flat-spectrum and steep-spectrum subsamples. We find that our flat-spectrum sample shows significant (~3.5σ) evidence for a correlation between Mg II absorption and RM at 1.4?GHz, while our steep-spectrum sample shows no such correlation. We argue that such an effect cannot be explained by either luminosity or other observational effects, by evolution in another confounding variable, by wavelength-dependent polarization structure in an active galactic nucleus, by the Galactic foreground, by cosmological expansion, or by partial coverage models. We conclude that our data are most consistent with intervenors directly contributing to the Faraday rotation along the line of sight, and that the intervening systems must therefore have coherent magnetic fields of substantial strength ( μG). Nevertheless, the weak nature of the correlation will require future high-resolution and broadband radio observations in order to place it on a much firmer statistical footing.
机译:类星体光谱中的强单离子镁(Mg II)吸收线通常充当沿视线插入星系的代理。先前的研究已经发现,这些Mg II吸收剂的数量与法拉第旋转测量(RM)在≈5?GHz之间具有相关性。我们将35,752个光学识别的非本征Mg II吸收系统的样本与25,649个偏振本底无线电源进行交叉匹配,为此我们对1.4?GHz处的光谱指数和RM进行了测量。我们使用光谱指数将599个信号源的最终样本分成平坦频谱和陡峭频谱的子样本。我们发现,我们的平谱样本显示了显着的(〜3.5σ)证据,表明在1.4?GHz处Mg II吸收与RM之间存在相关性,而我们的陡谱样本则没有这种相关性。我们认为,这种效应不能用光度或其他观测效应,在另一个混淆变量中的演化,在活跃的银河核中与波长相关的偏振结构,通过银河的前景,通过宇宙学的扩展或通过部分覆盖模型来解释。 。我们得出的结论是,我们的数据与直接导致法拉第沿视线旋转的干涉器最一致,因此,干涉系统必须具有相当大的强度(μG)的相干磁场。然而,相关性的弱性将需要未来的高分辨率和宽带无线电观测,以便使其在更牢固的统计基础上。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号