论文标题

天体物理和宇宙探索的太空项目(空间),ESA独立任务以及对Origins太空望远镜的可能贡献

Space Project for Astrophysical and Cosmological Exploration (SPACE), an ESA stand-alone mission and a possible contribution to the Origins Space Telescope

论文作者

Burgarella, Denis, Bunker, Andrew, Bouwens, Rychard, Pagani, Laurent, Afonso, Jose, Atek, Hakim, Audard, Marc, Cabrit, Sylvie, Caputi, Karina, Ciesla, Laure, Conselice, Christopher, Cooray, Asantha, Cresci, Giovanni, Curti, Mirko, Espinosa, Jose Miguel Rodriguez, Ferrari, Marc, Kobayashi, Chiaki, Lagarde, Nadege, Maestro, Jesus Gallego, Maiolino, Roberto, Malek, Katarzyna, Mannucci, Filippo, Montillaud, Julien, Oesch, Pascal, Pearson, Chris, Pollo, Agnieszka, Reyle, Céline, Rosario, David, Sakon, Itsuki, Schaerer, Daniel, Sharples, Ray, Sobral, David, Zamkotsian, Frederic

论文摘要

我们提出了一个名为“天体物理和宇宙学探索太空项目”的新任务,作为ESA长期计划航行2050计划的一部分。空间将在最早的时间研究星系演化,其关键目标是绘制重元素的形成,测量星系光度功能的演变,从而在宇宙时间内追踪星系中恒星质量的堆积,并找到第一个超级量子的黑洞(SMBHS)。该任务将利用参数空间的独特区域,与HST和JWST进行狭窄的超深度调查之间,以及诸如罗马太空望远镜和欧几里得等浅广场调查,并应在Z> 10的Z> 10中提供非常高的红外星系的任何当前或计划中最大的任务中的最大样本。至关重要的是,我们提出了一个广阔的光谱近IIR + MID-IR能力,这将通过检测和确定第一个星系和第一个SMBH的统计样本来大大增强我们对第一个星系的理解,并绘制出早期宇宙中星系的金属富集历史的绘制,从而可能与最初的恒星形成了与Metal of Metal-firee的潜在标志。宽场和波长的空间范围还将为我们提供一个独特的机会,通过对近红外IR中的银河系进行广泛的调查来研究星形阵型。该科学项目可以通过独立的ESA领导的M任务或L任务的工具(与ESA和/或NASA,JAXA和其他国际空间代理机构)一起启用,具有宽阔的(亚)毫米功能,波长> 500微米。

We propose a new mission called Space Project for Astrophysical and Cosmological Exploration (SPACE) as part on the ESA long term planning Voyage 2050 programme. SPACE will study galaxy evolution at the earliest times, with the key goals of charting the formation of the heavy elements, measuring the evolution of the galaxy luminosity function, tracing the build-up of stellar mass in galaxies over cosmic time, and finding the first super-massive black holes (SMBHs) to form. The mission will exploit a unique region of the parameter space, between the narrow ultra-deep surveys with HST and JWST, and shallow wide-field surveys such as Roman Space Telescope and EUCLID, and should yield by far the largest sample of any current or planned mission of very high redshift galaxies at z > 10 which are sufficiently bright for detailed follow-up spectroscopy. Crucially, we propose a wide-field spectroscopic near-IR + mid-IR capability which will greatly enhance our understanding of the first galaxies by detecting and identifying a statistical sample of the first galaxies and the first SMBH, and to chart the metal enrichment history of galaxies in the early Universe - potentially finding signatures of the very first stars to form from metal-free primordial gas. The wide-field and wavelength range of SPACE will also provide us a unique opportunity to study star formation by performing a wide survey of the Milky Way in the near-IR + mid-IR. This science project can be enabled either by a stand-alone ESA-led M mission or by an instrument for an L mission (with ESA and/or NASA, JAXA and other international space agencies) with a wide-field (sub-)millimetre capability at wavelength > 500 microns.

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