论文标题
模拟JWST/NIRCAM颜色选择高红移星系
Simulating JWST/NIRCam Color Selection of High-Redshift Galaxies
论文作者
论文摘要
即将到来的詹姆斯·韦伯太空望远镜(JWST)上的Nircam乐器将提供最遥远的星系的前所未有的视图。为了准备未来的深nircam外层次调查,使用Lyman辍学技术了解高红移星系的颜色选择至关重要。为此,我们使用了Jades外乳术超过人工实现(Jaguar)模拟目录来模拟一系列具有逼真的噪声估计值的外层面调查。这使我们能够探索不同的颜色选择及其对回收的高红移星系和下部红移闯入者的数量密度的影响。我们探讨了调查深度,检测信噪比,颜色选择方法,检测过滤器的选择以及LY $α$发射线的存在如何影响所得的辍学样品。我们发现,红色选择颜色减少了回收的高红移星系的数量,但最终样本的总体准确性较高。此外,我们发现使用两三个颜色切割的方法具有更高的精度,因为它们能够选择低降低静止和微弱的尘土飞扬的跨层流星系。我们还探索了棕色矮人的近红外颜色,并证明,虽然预计它们的天空密度较低,但最有可能在F090W辍学选择中恢复它们,但有一些颜色切割有助于减轻这种污染。总体而言,我们的结果提供了NIRCAM选择方法,以帮助仅通过光度法创建大型高红移星系的大型纯样品。
The NIRCam instrument on the upcoming James Webb Space Telescope (JWST) will offer an unprecedented view of the most distant galaxies. In preparation for future deep NIRCam extragalactic surveys, it is crucial to understand the color selection of high-redshift galaxies using the Lyman dropout technique. To that end, we have used the JAdes extraGalactic Ultradeep Artificial Realizations (JAGUAR) mock catalog to simulate a series of extragalactic surveys with realistic noise estimates. This enables us to explore different color selections and their impact on the number density of recovered high-redshift galaxies and lower-redshift interlopers. We explore how survey depth, detection signal-to-noise ratio, color selection method, detection filter choice, and the presence of the Ly$α$ emission line affects the resulting dropout selected samples. We find that redder selection colors reduce the number of recovered high-redshift galaxies, but the overall accuracy of the final sample is higher. In addition, we find that methods that utilize two or three color cuts have higher accuracy because of their ability to select against low-redshift quiescent and faint dusty interloper galaxies. We also explore the near-IR colors of brown dwarfs and demonstrate that, while they are predicted to have low on-sky densities, they are most likely to be recovered in F090W dropout selection, but there are color cuts which help to mitigate this contamination. Overall, our results provide NIRCam selection methods to aid in the creation of large, pure samples of ultra high-redshift galaxies from photometry alone.