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The Evolution of Luminous Compact BlueGalaxies: Disks or Spheroids?

机译:发光紧凑型蓝色格列斯的演变:磁盘或球状体?

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Luminous compact blue galaxies (LCBGs) are a diverse class of galaxies characterized by high luminosities, blue colors, and high surface brightnesses. Residing at the high luminosity, high mass end of the blue sequence, LCBGs sit at the critical juncture of galaxies that are evolving from the blue to the red sequence. Yet we do not understand what drives the evolution of LCBGs, nor how they will evolve. Based on single-dish HI observations, we know that they have a diverse range =10~(9-10.5)M_o of properties. LCBGs are HI-rich with M_(HI)=10~(-10.5)M_o , have moderate M_(dyn)=10~(10-12)M_o, and 80% have gas depletion timescales less than 3 Gyr. These properties are consistent with LCBGs evolving into low-mass spirals or high mass dwarf ellipticals or dwarf irregulars. However, LCBGs do not follow the Tully-Fisher relation, nor can most evolve onto it, implying that many LCBGs are not smoothly rotating, virialized systems. GMRT and VLA HI maps confirm this conclusion revealing signatures of recent interactions and dynamically hot components in some local LCBGs, consistent with the formation of a thick disk or spheroid. Such signatures and the high incidence of close companions around LCBGs suggest that star formation in local LCBGs is likely triggered by interactions. The dynamical masses and apparent spheroid formation in LCBGs combined with previous results from optical spectroscopy are consistent with virial heating being the primary mechanism for quenching star formation in these galaxies.
机译:发光的紧凑型蓝色星系(LCBG)是一种不同类别的星系,其特征在于高光泽,蓝色和高表面亮度。居住在高亮度,蓝色序列的高质量末端,LCBG坐在从蓝色到红色序列发展的星系的关键时刻。然而,我们不明白驱动LCBG的演变的原因,也不明白他们将如何发展。基于单盘HI观察,我们知道它们具有各种范围= 10〜(9-10.5)M_O的属性。 LCBGS Hi-Rich,M_(HI)= 10〜(-10.5)M_O,具有中等M_(DYN)= 10〜(10-12)M_O,80%具有少于3 Gyr的气体消耗时间尺寸。这些性质与LCBG发展成低质量螺旋或高质量矮小椭圆形或矮化不规则。然而,LCBG不遵循塔利 - 费舍尔关系,也不会大部分地发展到它上,这意味着许多LCBG都不顺利地旋转,有尾状的系统。 GMRT和VLA HI MAPS确认了该结论,揭示了最近的相互作用和一些局部LCBG中的动态热部件的签名,这与厚盘或球状的形成一致。这种签名和LCBG周围密闭伴侣的高发病率表明本地LCBG中的星形成可能是通过相互作用引发的。 LCBG中的动态质量和表观球形形成结合光谱分析的先前结果与病毒加热一致,是在这些星系中淬火星形形成的主要机制。

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