首页> 外文期刊>The Astrophysical journal >Interstellar Medium and Star Formation of Starburst Galaxies on the Merger Sequence
【24h】

Interstellar Medium and Star Formation of Starburst Galaxies on the Merger Sequence

机译:合并序列上星爆星系的星际介质和恒星形成

获取原文

摘要

The interstellar medium is a key ingredient that governs star formation in galaxies. We present a detailed study of the infrared (~1–500 μm) spectral energy distributions of a large sample of 193 nearby () luminous infrared galaxies (LIRGs) covering a wide range of evolutionary stages along the merger sequence. The entire sample has been observed uniformly by 2MASS, WISE, Spitzer, and Herschel. We perform a multicomponent decomposition of the spectra to derive physical parameters of the interstellar medium, including the intensity of the interstellar radiation field and the mass and luminosity of the dust. We also constrain the presence and strength of nuclear dust heated by active galactic nuclei. The radiation field of LIRGs tends to have much higher intensity than that of quiescent galaxies, and it increases toward advanced merger stages as a result of the central concentration of the interstellar medium and star formation. The total gas mass is derived from the dust mass and the galaxy stellar mass. We find that the gas fraction of LIRGs is on average ~0.3 dex higher than that of main-sequence star-forming galaxies, rising moderately toward advanced merger stages. All LIRGs have star formation rates that place them above the galaxy star formation main sequence. Consistent with recent observations and numerical simulations, the global star formation efficiency of the sample spans a wide range, filling the gap between normal star-forming galaxies and extreme starburst systems.
机译:星际介质是控制星系中恒星形成的关键成分。我们对193个附近的()发光红外星系(LIRGs)的大样本的红外光谱(〜1-500μm)光谱能量分布进行了详细研究,涵盖沿合并序列的广泛演化阶段。 2MASS,WISE,Spitzer和Herschel均匀地观察了整个样品。我们对光谱进行多组分分解,以得出星际介质的物理参数,包括星际辐射场的强度以及尘埃的质量和光度。我们还限制了活跃的银河核加热的核尘的存在和强度。 LIRGs的辐射场往往比静态星系的辐射场强度高得多,并且由于星际介质的中心集中和恒星形成,它的辐射场向合并后期逐渐增加。总气体质量来自尘埃质量和星系恒星质量。我们发现,LIRGs的气体分数平均比主序星系星系的气体分数高约0.3 dex,朝着高级合并阶段适度上升。所有的LIRG具有恒星形成速率,使它们位于星系恒星形成主序列之上。与最近的观测和数值模拟一致,样品的整体恒星形成效率跨越了很宽的范围,填补了正常恒星形成星系和极端星爆系统之间的空白。

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