论文标题

嘻哈研究对南极星系和低表面亮度星系

HIPASS study of southern ultradiffuse galaxies and low surface brightness galaxies

论文作者

Zhou, Yun-Fan, Sengupta, Chandreyee, Chandola, Yogesh, Wong, O. Ivy, Scott, Tom C., Ma, Yin-Zhe, Chen, Hao

论文摘要

我们通过使用HI Parkes All Sky Survey(Hipass)进行了HI对外搜索的结果,以获取低表面亮度星系(LSBGS)和从暗能量调查(DES)中确定的超底型星系(UDGS)的样本。我们旨在建立DES LSBG的红移,以确定UDG的分数并了解其特性。在调查的409个星系中,没有一个在HI中明确检测到。我们的研究受到了嘻哈的高光谱RMS的严重阻碍,因此在本文中,我们没有提出任何有力的决定性主张,而是讨论我们的结果反映的主要趋势和可能的情况。不知所措的非潜在数量表明:(a)组中的所有LSBG(蓝色或红色)都经历了环境的经历了预处理,或者大多数是遥远的星系,超出了hipass检测阈值。 (b)研究的样品很可能由典型的矮星系的HI质量的星系主导。如果我们的样品中有银河系(MW)大小(r_e)星系,则具有成比例的HI含量,即使嘻哈光谱质量施加的局限性也会被检测到它们。这使我们推断出,如果某些LSBG具有MW尺寸的光学直径,则其HI含量可能在矮范围内。将来使用SKA前体进行更敏感的观察可能会解决这些问题。

We present results from an HI counterpart search using the HI Parkes All Sky Survey (HIPASS) for a sample of low surface brightness galaxies (LSBGs) and ultradiffuse galaxies (UDGs) identified from the Dark Energy Survey (DES). We aimed to establish the redshifts of the DES LSBGs to determine the UDG fraction and understand their properties. Out of 409 galaxies investigated, none were unambiguously detected in HI. Our study was significantly hampered by the high spectral rms of HIPASS and thus in this paper we do not make any strong conclusive claims but discuss the main trends and possible scenarios our results reflect. The overwhelming number of non-detections suggest that: (A) Either all the LSBGs in the groups, blue or red, have undergone environment aided pre-processing and are HI deficient or the majority of them are distant galaxies, beyond the HIPASS detection threshold. (B) The sample investigated is most likely dominated by galaxies with HI masses typical of dwarf galaxies. Had there been Milky Way (MW) size (R_e) galaxies in our sample, with proportionate HI content, they would have been detected, even with the limitations imposed by the HIPASS spectral quality. This leads us to infer that if some of the LSBGs have MW size optical diameters, their HI content is possibly in the dwarf range. More sensitive observations using the SKA precursors in future may resolve these questions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源