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首页> 外文期刊>The Astrophysical journal >Following the Cosmic Evolution of Pristine Gas. II. The Search for Pop III–bright Galaxies
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Following the Cosmic Evolution of Pristine Gas. II. The Search for Pop III–bright Galaxies

机译:跟随原始气体的宇宙演化。二。寻找流行三世-明亮的星系

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Direct observational searches for Population III (Pop III) stars at high redshift are faced with the question of how to select the most promising targets for spectroscopic follow-up. To help answer this, we use a large-scale cosmological simulation, augmented with a new subgrid model that tracks the fraction of pristine gas, to follow the evolution of high-redshift galaxies and the Pop III stars they contain. We generate rest-frame ultraviolet (UV) luminosity functions for our galaxies and find that they are consistent with current observations. Throughout the redshift range , we identify "Pop III–bright" galaxies as those with at least 75% of their flux coming from Pop III stars. While less than 1% of galaxies brighter than mag are Pop III–bright in the range , roughly 17% of such galaxies are Pop III–bright at z?=?9, immediately before reionization occurs in our simulation. Moving to z?=?10, mag corresponds to larger, more luminous galaxies, and the Pop III–bright fraction falls off to 5%. Finally, at the highest redshifts, a large fraction (29% at z = 14 and 41% at z = 15) of all galaxies are Pop III–bright regardless of magnitude. While mag galaxies are extremely rare during this epoch, we find that 13% of galaxies at z?=?14 are Pop III–bright with mag, a intrinsic magnitude within reach of the James Webb Space Telescope using lensing. Thus, we predict that the best redshift to search for luminous Pop III–bright galaxies is just before reionization, while lensing surveys for fainter galaxies should push to the highest redshifts possible.
机译:在高红移条件下直接观察搜寻III号(Pop III)恒星面临的问题是如何选择最有希望的目标进行光谱跟踪。为了帮助回答这个问题,我们使用了大规模的宇宙学模拟,并增加了一个新的子网格模型,该模型可跟踪原始气体的比例,以跟踪高红移星系和它们所包含的Pop III恒星的演化。我们为我们的星系生成了静止帧的紫外线(UV)光度函数,并发现它们与当前的观测结果一致。在整个红移范围内,我们将“ Pop III-明亮”星系确定为至少具有75%的通量来自Pop III恒星的星系。在该范围内,只有不到1%比mag亮的星系Pop III –明亮,但大约17%的这类星系在z?=?9时是Pop III –明亮的。移动到z?=?10时,mag对应于更大,更发光的星系,而Pop III的明亮部分下降到5%。最后,在最高的红移下,所有星系中的很大一部分(z = 14时为29%,z = 15时为41%)是波普III-明亮的,与大小无关。尽管在这个时期极少有星系星系,但我们发现z?=?14时有13%的星系是Pop III-带有星系的明亮星体,这是詹姆斯韦伯太空望远镜使用镜头所能达到的一个固有量级。因此,我们预测寻找发光的Pop III明亮的星系的最佳红移是在电离之前,而较暗的星系的透镜测量应尽可能地推向最高。

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