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Illuminating Low Surface Brightness Galaxies with the Hyper Suprime-Cam Survey

机译:使用超级Suprime-Cam调查照亮低表面亮度星系

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We present a catalog of extended low surface brightness galaxies (LSBGs) identified in the Wide layer of the Hyper Suprime-Cam Subaru Strategic Program (HSC-SSP). Using the first ~200?deg2 of the survey, we have uncovered 781 LSBGs, spanning red (g???i?≥?0.64) and blue (g???i?r eff?=?25–14''), our sample is likely dominated by low-redshift objects. We define LSBGs to have mean surface brightnesses mag?arcsec?2, which allows nucleated galaxies into our sample. As a result, the central surface brightness distribution spans a wide range of μ 0(g) = 18–27.4?mag?arcsec?2, with 50% and 95% of galaxies fainter than 24.3 and 22?mag?arcsec?2, respectively. Furthermore, the surface brightness distribution is a strong function of color, with the red distribution being much broader and generally fainter than that of the blue LSBGs, and this trend shows a clear correlation with galaxy morphology. Red LSBGs typically have smooth light profiles that are well characterized by single-component Sérsic functions. In contrast, blue LSBGs tend to have irregular morphologies and show evidence for ongoing star formation. We cross-match our sample with existing optical, H i, and ultraviolet catalogs to gain insight into the physical nature of the LSBGs. We find that our sample is diverse, ranging from dwarf spheroidals and ultradiffuse galaxies in nearby groups to gas-rich irregulars to giant LSB spirals, demonstrating the potential of the HSC-SSP to provide a truly unprecedented view of the LSBG population.
机译:我们提供了在超级Suprime-Cam Subaru战略计划(HSC-SSP)的宽层中确定的扩展的低表面亮度星系(LSBG)的目录。使用调查的第一个〜200?deg2,我们发现了781个LSBG,跨越了红色(g ??? i?≥?0.64)和蓝色(g ??? i?r eff?=?25–14'') ,我们的样本很可能由低红移对象占主导。我们将LSBG定义为具有平均表面亮度mag?arcsec?2,这可以使有核星系进入我们的样本。结果,中心表面的亮度分布范围为μ0(g)= 18–27.4?mag?arcsec?2,其中50%和95%的星系比24.3和22?mag?arcsec?2暗,分别。此外,表面亮度分布是颜色的强函数,红色分布比蓝色LSBG的宽度更宽且通常更暗,并且这种趋势与星系形态有着明显的相关性。红色LSBG通常具有平滑的光轮廓,其特征是单组分Sérsic功能。相比之下,蓝色LSBG倾向于具有不规则的形态,并显示出正在进行恒星形成的证据。我们将样品与现有的光学,HI和紫外线目录进行交叉匹配,以深入了解LSBG的物理性质。我们发现我们的样本是多种多样的,从附近的小球体和超扩散星系,到气体丰富的不规则星系,再到巨型LSB螺旋形,证明了HSC-SSP可以为LSBG种群提供真正空前的视野。

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