宇宙分子气体密度的演化
星系天体物理
2019-03-22 v1
摘要
在通过宇宙历史理解星系形成与演化的谜题中,最后缺失的拼图之一是关于冷气体供给在恒星形成过程中所起作用的具体图景。冷气体是恒星形成的燃料,因而既通过星系气体质量分数所决定的物质总量,也通过其转化为恒星的效率,来调节恒星质量的累积。在过去十年中,人们在理解这两类因素的相对重要性及反馈作用方面取得了重要进展,并首次获得了红移 4 以内冷气体体密度的测量(即“宇宙的冷气体历史”)。为在未来数十年匹配恒星形成与黑洞吸积历史测量的精度,相较于当前设备所能达到的水平,分子谱线巡天速度需提升两个数量级。实现如此巨大增益的可能途径包括对 ALMA 等当前设施在 2030 年(及以后)进行重大升级,以及最终建设新一代射电至毫米波设施,例如下一代甚大阵列(ngVLA)概念。
引用
@article{arxiv.1903.08659,
title = {The evolution of the cosmic molecular gas density},
author = {Fabian Walter and Chris Carilli and Roberto Decarli and Dominik Riechers and Manuel Aravena and Franz Erik Bauer and Frank Bertoldi and Alberto Bolatto and Leindert Boogaard and Rychard Bouwens and Denis Burgarella and Caitlin Casey and Asantha Cooray and Paolo Cortes and Pierre Cox and Emanuele Daddi and Jeremy Darling and Bjorn Emonts and Jorge Gonzalez Lopez and Jacqueline Hodge and Hanae Inami and Rob Ivison and Ely Kovetz and Olivier Le Fevre and Benjamin Magnelli and Dan Marrone and Eric Murphy and Desika Narayanan and Mladen Novak and Pascal Oesch and Riccardo Pavesi and Tanio Diaz Santos and Mark Sargent and Douglas Scott and Nick Scoville and Gordon Stacey and Jeff Wagg and Paul van der Werf and Bade Uzgil and Axel Weiss and Min Yun},
journal= {arXiv preprint arXiv:1903.08659},
year = {2019}
}
备注
7 pages, 2 figures, Science White paper submitted to Astro2020 Decadal Survey