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首页> 外文期刊>The astronomical journal >Multiple Populations in NGC 1851: Abundance Variations and UV Photometric Synthesis in the Washington and HST/WFC3 Systems
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Multiple Populations in NGC 1851: Abundance Variations and UV Photometric Synthesis in the Washington and HST/WFC3 Systems

机译:NGC 1851中的多个种群:华盛顿和HST / WFC3系统中的丰度变化和UV光度合成

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The analysis of multiple populations (MPs) in globular clusters (GCs), both spectroscopically and photometrically, is key in understanding their formation and evolution. The relatively narrow Johnson U, F336W, and Stromgren and Sloan u filters have been crucial in exhibiting these MPs photometrically, but in Paper I we showed that the broader Washington C filter can more efficiently detect MPs in the test case GC NGC 1851. Additionally, In Paper I we detected a double main sequence (MS) that has not been detected in previous observations of NGC 1851. We now match this photometry to NGC 1851's published RGB abundances and find that the two RGB branches observed in C generally exhibit different abundance characteristics in a variety of elements (e.g., Ba, Na, and O) and in CN band strengths, but no single element can define the two RGB branches. However, simultaneously considering [Ba/Fe] or CN strength with either [Na/Fe], [O/Fe], or CN strength can separate the two photometric RGB branches into two distinct abundance groups. Matches of NGC 1851's published SGB and HB abundances to the Washington photometry shows consistent characterizations of the MPs, which can be defined as an O-rich/N-normal population and an O-poor/N-rich population. Photometric synthesis for both the Washington C filter and the F336W filter finds that these abundance characteristics, with appropriate variations in He, can reproduce for both filters the photometric observations in both the RGB and the MS. This photometric synthesis also confirms the throughput advantages that the C filter has in detecting MPs.
机译:光谱和光度分析球状星团(GC)中的多个种群(MP),是了解它们形成和演化的关键。相对较窄的Johnson U,F336W,Stromgren和Sloan u过滤器对于以光度法展示这些MP至关重要,但是在论文I中,我们表明,较宽的Washington C过滤器可以在测试用例GC NGC 1851中更有效地检测MP。在论文I中,我们检测到了先前在NGC 1851观测中未发现的双主序列(MS)。现在,我们将该测光法与NGC 1851出版的RGB丰度相匹配,发现在C中观察到的两个RGB分支通常表现出不同的丰度特征在各种元素(例如Ba,Na和O)中以及CN波段强度中,但没有一个元素可以定义两个RGB分支。但是,同时考虑[Ba / Fe]或CN强度与[Na / Fe],[O / Fe]或CN强度可以将两个测光RGB分支分成两个不同的丰度组。 NGC 1851出版的SGB和HB丰度与华盛顿光度法的匹配显示了MP的一致特征,可以将其定义为O含量高/ N正常的人群和O含量低/ N含量高的人群。对Washington C滤镜和F336W滤镜的光度合成发现,这些丰度特性(具有适当的He值变化)可以在RGB和MS中为两个滤镜重现光度观测值。这种光度合成也证实了C滤波器在检测MP方面的吞吐量优势。

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