论文标题
Snowmass2021宇宙边界白皮书:使旗舰黑暗能源实验具有全部潜力
Snowmass2021 Cosmic Frontier White Paper: Enabling Flagship Dark Energy Experiments to Reach their Full Potential
论文作者
论文摘要
新一代强大的黑暗能源实验将在未来十年为宇宙学开辟新的远景。但是,如果没有其他望远镜的数据,这些项目将无法发挥其最大潜力。这份白皮书尤其着重于地面光谱和光度观测的引人注目的好处,以补充Vera C. rubin天文台,以及较小的程序,以帮助DESI-2实验和CMB-S4。这些附加的数据集将从这些旗舰项目中改善深色能源限制,超越自己的可能性,并将全新的窗户打开基本物理学。例如,额外的光度法和单对象光谱法将为超新星和强烈的镜头宇宙学提供必要的后续信息,而高度培养的光谱均来自宽阔的较小设施以及较大的设施以及较大的天空区域上较大的设施,将产生更准确的光度光度估计值,以提供弱透镜和星际群体群集群集群集的估计值超新星哈勃图的红移,提供了对限制天体物理系统效应的改进理解,并实现了探测重力性质的新测量。一个共同的线程是,从一系列望远镜/仪器中访问互补数据将对未来几年的黑暗能源科学的进步率产生重大影响。
A new generation of powerful dark energy experiments will open new vistas for cosmology in the next decade. However, these projects cannot reach their utmost potential without data from other telescopes. This white paper focuses in particular on the compelling benefits of ground-based spectroscopic and photometric observations to complement the Vera C. Rubin Observatory, as well as smaller programs in aid of a DESI-2 experiment and CMB-S4. These additional data sets will both improve dark energy constraints from these flagship projects beyond what would possible on their own and open completely new windows into fundamental physics. For example, additional photometry and single-object spectroscopy will provide necessary follow-up information for supernova and strong lensing cosmology, while highly-multiplexed spectroscopy both from smaller facilities over wide fields and from larger facilities over narrower regions of sky will yield more accurate photometric redshift estimates for weak lensing and galaxy clustering measurements from the Rubin Observatory, provide critical spectroscopic host galaxy redshifts for supernova Hubble diagrams, provide improved understanding of limiting astrophysical systematic effects, and enable new measurements that probe the nature of gravity. A common thread is that access to complementary data from a range of telescopes/instruments would have a substantial impact on the rate of advance of dark energy science in the coming years.