论文标题

Cosmos-Web:JWST宇宙起源调查的概述

COSMOS-Web: An Overview of the JWST Cosmic Origins Survey

论文作者

Casey, Caitlin M., Kartaltepe, Jeyhan S., Drakos, Nicole E., Franco, Maximilien, Harish, Santosh, Paquereau, Louise, Ilbert, Olivier, Rose, Caitlin, Cox, Isabella G., Nightingale, James W., Robertson, Brant E., Silverman, John D., Koekemoer, Anton M., Massey, Richard, McCracken, Henry Joy, Rhodes, Jason, Akins, Hollis B., Amvrosiadis, Aristeidis, Arango-Toro, Rafael C., Bagley, Micaela B., Bongiorno, Angela, Capak, Peter L., Champagne, Jaclyn B., Chartab, Nima, Ortiz, Oscar A. Chavez, Chworowsky, Katherine, Cooke, Kevin C., Cooper, Olivia R., Darvish, Behnam, Ding, Xuheng, Faisst, Andreas L., Finkelstein, Steven L., Fujimoto, Seiji, Gentile, Fabrizio, Gillman, Steven, Gould, Katriona M. L., Gozaliasl, Ghassem, Hayward, Christopher C., He, Qiuhan, Hemmati, Shoubaneh, Hirschmann, Michaela, Jahnke, Knud, Jin, Shuowen, Khostovan, Ali Ahmad, Kokorev, Vasily, Lambrides, Erini, Laigle, Clotilde, Larson, Rebecca L., Leung, Gene C. K., Liu, Daizhong, Liaudat, Tobias, Long, Arianna S., Magdis, Georgios, Mahler, Guillaume, Mainieri, Vincenzo, Manning, Sinclaire M., Maraston, Claudia, Martin, Crystal L., McCleary, Jacqueline E., McKinney, Jed, McPartland, Conor J. R., Mobasher, Bahram, Pattnaik, Rohan, Renzini, Alvio, Rich, R. Michael, Sanders, David B., Sattari, Zahra, Scognamiglio, Diana, Scoville, Nick, Sheth, Kartik, Shuntov, Marko, Sparre, Martin, Suzuki, Tomoko L., Talia, Margherita, Toft, Sune, Trakhtenbrot, Benny, Urry, C. Megan, Valentino, Francesco, Vanderhoof, Brittany N., Vardoulaki, Eleni, Weaver, John R., Whitaker, Katherine E., Wilkins, Stephen M., Yang, Lilan, Zavala, Jorge A.

论文摘要

我们介绍了Cosmos-Web的调查设计,实施和前景,这是由James Webb太空望远镜在其第一个观察周期中进行的255小时财政计划。 Cosmos-Web是一个连续的0.54度$^2 $ NIRCAM成像调查,分别是四个过滤器(F115W,F150W,F277W和F444W),它将达到5 $σ$σ$σ$点的源深度$ \ sim $ \ sim $ 27.5-28.2 MAGNITITUDES。同时,我们将在一个过滤器(F770W)中获得0.19 v $^2 $的MIRI成像,达到5 $σ$ coint源深度$ \ sim $ 25.3-26.0幅度。 Cosmos-Web将建立在Cosmos Field中可用的多波长观测和数据产品的丰富遗产的基础上。 Cosmos-Web的设计是出于三个主要的科学目标的动机:(1)在电离时期($ 6 <Z <11 $)中发现数千个星系,并在地图Reionization的空间分布,环境和驱动器上发现足够大的尺度上的驱动器,以减轻COSMIC差异,以确定稀有的QuiesCentive of Z Quiescent of QuiesCentive of $ Quiescent $ 4 $ 4 $ 4 $ 4 $ 4星系($ m_ \ star> 10^{10} $ \,m $ _ \ odot $),(3)直接使用弱的重力镜头直接测量了恒星质量到HALO质量关系的演变,并衡量了$ z \ sim2.5 $,并测量其与Galaxies的星系形成历史和物种的方差。此外,我们预计Cosmos-Web的遗产价值将超出这些科学目标,从而触及了许多其他的天体物理学领域,例如鉴定第一个直接崩溃的黑洞候选者,银河系中的超级副局部恒星,以及可能识别$ z> 10 $ Z> 10 $配对的超级新闻。在本文中,我们概述了调查的主要测量,规格,目标和新发现的前景。

We present the survey design, implementation, and outlook for COSMOS-Web, a 255 hour treasury program conducted by the James Webb Space Telescope in its first cycle of observations. COSMOS-Web is a contiguous 0.54 deg$^2$ NIRCam imaging survey in four filters (F115W, F150W, F277W, and F444W) that will reach 5$σ$ point source depths ranging $\sim$27.5-28.2 magnitudes. In parallel, we will obtain 0.19 deg$^2$ of MIRI imaging in one filter (F770W) reaching 5$σ$ point source depths of $\sim$25.3-26.0 magnitudes. COSMOS-Web will build on the rich heritage of multiwavelength observations and data products available in the COSMOS field. The design of COSMOS-Web is motivated by three primary science goals: (1) to discover thousands of galaxies in the Epoch of Reionization ($6<z<11$) and map reionization's spatial distribution, environments, and drivers on scales sufficiently large to mitigate cosmic variance, (2) to identify hundreds of rare quiescent galaxies at $z>4$ and place constraints on the formation of the Universe's most massive galaxies ($M_\star>10^{10}$\,M$_\odot$), and (3) directly measure the evolution of the stellar mass to halo mass relation using weak gravitational lensing out to $z\sim2.5$ and measure its variance with galaxies' star formation histories and morphologies. In addition, we anticipate COSMOS-Web's legacy value to reach far beyond these scientific goals, touching many other areas of astrophysics, such as the identification of the first direct collapse black hole candidates, ultracool sub-dwarf stars in the Galactic halo, and possibly the identification of $z>10$ pair-instability supernovae. In this paper we provide an overview of the survey's key measurements, specifications, goals, and prospects for new discovery.

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