论文标题

平行的明亮Z〜9星系:HST平行程序的剩余紫外光度函数的明亮末端

Bright z~9 Galaxies in Parallel: The Bright End of the Rest-UV Luminosity Function from HST Parallel Programs

论文作者

Bagley, Micaela B., Finkelstein, Steven L., Rojas-Ruiz, Sofía, Diekmann, James, Finkelstein, Keely D., Song, Mimi, Papovich, Casey, Somerville, Rachel S., Baronchelli, Ivano, Dai, Y. Sophia

论文摘要

Z> 8处的亮星系的丰度可以对星系形成和演变模型的关键约束,因为当实施了气体冷却和恒星形成的不同物理处方时,预测的丰度差异很大。我们介绍了搜索从纯平的哈勃空间望远镜成像程序中选择的亮z = 9-10星系的结果。我们包括132个田地,是最亮的电源星系调查,哈勃红外纯平行成像外乳术调查以及WFC3红外光谱平行调查的一部分。这些观察结果总共涵盖了620平方米的Arcmin,其中约70%也被Spitzer空间望远镜红外成像覆盖。我们在8.3 <z <11范围内确定了13个候选星系,其中24.5 <m_h <26.5(-22.9 <m_uv <-21.2)。该样本利用了纯平行观测值的不相关性质,以克服宇宙方差并利用完整的多波长选择过程,以最大程度地减少污染而无需牺牲完整性。我们执行详细的完整性和污染分析,并使用伪嵌入技术对紫外光度函数的亮端进行了测量。我们发现与Finkelstein等人的结果一致的数量密度。 (2022)和HST并行字段中的其他搜索。这些明亮的候选人可能居住在过度范围内,可能代表了宇宙电离的一些最早的地点。这些新的候选人是对JWST进行后续行动的绝佳目标,其中四个将在周期1中观察到NIRSPEC Prism。

The abundance of bright galaxies at z>8 can provide key constraints on models of galaxy formation and evolution, as the predicted abundance varies greatly when different physical prescriptions for gas cooling and star formation are implemented. We present the results of a search for bright z=9-10 galaxies selected from pure-parallel Hubble Space Telescope imaging programs. We include 132 fields observed as part of the Brightest of Reionizing Galaxies survey, the Hubble Infrared Pure Parallel Imaging Extragalactic Survey, and the WFC3 Infrared Spectroscopic Parallel survey. These observations cover a total of 620 sq. arcmin, about 70% of which is also covered with Spitzer Space Telescope infrared imaging. We identify thirteen candidate galaxies in the range 8.3<z<11 with 24.5 < m_H < 26.5 (-22.9 < M_UV < -21.2). This sample capitalizes on the uncorrelated nature of pure parallel observations to overcome cosmic variance and leverages a full multi-wavelength selection process to minimize contamination without sacrificing completeness. We perform detailed completeness and contamination analyses, and present measurements of the bright end of the UV luminosity function using a pseudo-binning technique. We find a number density consistent with results from Finkelstein et al. (2022) and other searches in HST parallel fields. These bright candidates likely reside in overdensities, potentially representing some of the earliest sites of cosmic reionization. These new candidates are excellent targets for follow-up with JWST, and four of them will be observed with the NIRSpec prism in Cycle 1.

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