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首页> 外文期刊>The Astrophysical journal >LOCAL BENCHMARKS FOR THE EVOLUTION OF MAJOR-MERGER GALAXIES—SPITZER OBSERVATIONS OF A K-BAND SELECTED SAMPLE
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LOCAL BENCHMARKS FOR THE EVOLUTION OF MAJOR-MERGER GALAXIES—SPITZER OBSERVATIONS OF A K-BAND SELECTED SAMPLE

机译:主要合并星系演化的地方基准— K波段选定样本的斯皮策观测

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We present Spitzer observations for a sample of close major-merger galaxy pairs (KPAIR sample) selected from cross-matches between the Two Micron All Sky Survey and Sloan Digital Sky Survey Data Release 3. The goals are to study the star formation activity in these galaxies and to set a local bench mark for the cosmic evolution of close major mergers. The Spitzer KPAIR sample (27 pairs, 54 galaxies) includes all spectroscopically confirmed spiral-spiral (S+S) and spiral-elliptical (S+E) pairs in a parent sample that is complete for primaries brighter than K = 12.5?mag, projected separations of 5 h –1 kpc ≤ s ≤ 20 h –1?kpc, and mass ratios ≤2.5. The Spitzer data, consisting of images in seven bands (3.6, 4.5, 5.8, 8, 24, 70, 160?μm), show very diversified IR emission properties. Compared to single spiral galaxies in a control sample, only spiral galaxies in S+S pairs show significantly enhanced specific star formation rate (sSFR = SFR/M), whereas spiral galaxies in S+E pairs do not. Furthermore, the SFR enhancement of spiral galaxies in S+S pairs is highly mass-dependent. Only those with M 1010.5 M ☉ show significant enhancement. Relatively low-mass (M ~ 1010 M ☉) spirals in S+S pairs have about the same SFR/M compared to their counterparts in the control sample, while those with 1011 M ☉ have on average a ~3 times higher SFR/M than single spirals. There is evidence for a correlation between the global star formation activities (but not the nuclear activities) of the component galaxies in massive S+S major-merger pairs (the "Holmberg effect"). There is no significant difference in the SFR/M between the primaries and the secondaries, nor between spirals of SEP 1 and those of SEP ≥ 1, SEP being the normalized separation parameter. The contribution of KPAIR galaxies to the cosmic SFR density in the local universe is only 1.7%, and amounts to .
机译:我们提供Spitzer观测值,用于从两个Micron All Sky Survey和Sloan Digital Sky Survey Data Release 3之间的交叉匹配中选择的一个接近的主要合并星系对样本(KPAIR样本)。目标是研究这些星系中的恒星形成活动星系,并为紧密的重大合并的宇宙演化设定当地基准。 Spitzer KPAIR样本(27对,54个星系)在父样本中包含所有光谱确认的螺旋-螺旋(S + S)和螺旋-椭圆(S + E)对,对于原色比K = 12.5?mag的原色完整,预计间隔为5 h –1 kpc≤s≤20 h –1?kpc,质量比≤2.5。 Spitzer数据由七个波段(3.6、4.5、5.8、8、24、70、160?μm)的图像组成,显示出非常多样化的红外发射特性。与对照样品中的单个螺旋星系相比,只有S + S对中的螺旋星系显示出明显提高的比星形成率(sSFR = SFR / M),而S + E对中的螺旋星系则没有。此外,S + S对中旋涡星系的SFR增强高度依赖于质量。只有M 1010.5 M those的那些才显示出明显的增强。 S + S对中相对较低质量的(M〜1010 M☉)螺旋与对照样品中的螺旋相比具有大约相同的SFR / M,而具有1011 M spiral的螺旋平均具有较高的SFR / M约3倍比单螺旋。有证据表明,大规模S + S大并购对中组成星系的全球恒星形成活动(但与核活动无关)之间存在相关性(“霍姆伯格效应”)。初级和次级之间的SFR / M没有显着差异,SEP <1和SEP≥1的螺旋之间也没有显着差异,SEP是归一化的分离参数。 KPAIR星系对局部宇宙中宇宙SFR密度的贡献仅为1.7%,总计为。

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