论文标题

H I轮廓不对称和附近星系的形状的统计分析

Statistical Analysis of H I Profile Asymmetry and Shape for Nearby Galaxies

论文作者

Yu, Niankun, Ho, Luis C., Wang, Jing, Li, Hangyuan

论文摘要

我们对附近29,958的H I排放线的综合分析($ z <0.06 $)的星系进行了统一分析,这些星系是从Alfalfa 21 cm调查中提取的。我们将增长曲线技术应用于得出光谱参数的数据库,并对它们相关的不确定性进行了鲁棒的估计。除了中央速度和总通量外,主目录还提供了新的线条宽度,轮廓不对称和轮廓形状的方法。对于Sloan Digital Sky调查可提供的13,511个星系的子样本,我们计算了倾斜角校正线宽度,从空间分辨的观测值进行了经验校准的旋转速度,以及基于H I大小估计的H I尺寸的动力质量。为了促进数据库的后续科学应用,我们还编译了星系的许多辅助物理特性,包括它们的光学形态,出色的质量和各种恒星形成活性的诊断。我们使用H I参数的均匀目录来检查轮廓不对称和形状的统计特性。在涵盖各种恒星群体和环境的完整样本中,在$ \ sim 20 \%$中检测到具有统计学意义的H I轮廓不对称性。全局h i配置文件为$ 35.2 \ pm 0.3 \%$单峰,$ 26.9 \ pm 0.3 \%$ flat-topped,$ 37.9 \ pm 0.3 \%$ $ $ double-double-horned。在给定的倾斜角度,双角曲线优先与较高的恒星质量或光学浓度的星系相关,而较低质量或浓度的星系倾向于具有单峰轮廓。

We present a uniform analysis of the integrated profile of the H I emission line of 29,958 nearby ($z < 0.06$) galaxies extracted from the ALFALFA 21 cm survey. We apply the curve-of-growth technique to derive a database of spectral parameters and robust estimates of their associated uncertainties. Besides the central velocity and total flux, the main catalog provides new measures of line width, profile asymmetry, and profile shape. For a subsample of 13,511 galaxies with optical properties available from the Sloan Digital Sky Survey, we compute inclination angle-corrected line widths, rotation velocities empirically calibrated from spatially resolved observations, and dynamical masses based on H I sizes estimated from the H I mass. To facilitate subsequent scientific applications of the database, we also compile a number of ancillary physical properties of the galaxies, including their optical morphology, stellar mass, and various diagnostics of star formation activity. We use the homogeneous catalog of H I parameters to examine the statistical properties of profile asymmetry and shape. Across the full sample, which covers a wide range of stellar masses and environments, statistically significant H I profile asymmetry is detected in $\sim 20\%$ of the galaxy population. The global H I profiles are $35.2 \pm 0.3\%$ single-peaked, $26.9 \pm 0.3\%$ flat-topped, and $37.9 \pm 0.3\%$ double-horned. At a given inclination angle, double-horned profiles are preferentially associated with galaxies of higher stellar mass or optical concentration, while galaxies of lower mass or concentration tend to have single-peaked profiles.

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