论文标题

欧几里得,鲁宾和罗马的联合调查处理:最终报告

Joint Survey Processing of Euclid, Rubin and Roman: Final Report

论文作者

Chary, R., Helou, G., Brammer, G., Capak, P., Faisst, A., Flynn, D., Groom, S., Ferguson, H. C., Grillmair, C., Hemmati, S., Koekemoer, A., Lee, B., Malhotra, S., Miyatake, H., Melchior, P., Momcheva, I., Newman, J., Masiero, J., Paladini, R., Prakash, A., Rusholme, B., Stickley, N. R., Smith, A., Wood-Vasey, W. M., Teplitz, H. I.

论文摘要

欧几里得,鲁宾/LSST和罗马(WFIRST)项目将在未来十年内进行旗舰光学/近红外调查。通过绘制成千上万的平方度天空并覆盖具有亚弧形分辨率的0.3和2微米之间的电磁光谱,这些项目将检测到数十亿个来源,从而对天文学群落进行广泛的天体物理研究,并对深色能量和深色物质的性质提供了前所未有的约束。这些任务的最终宇宙学,天体和时间域科学收益率将需要在单个调查项目范围之外的像素级别的联合调查处理(JSP)功能。此处示范的JSP努力提供了两个高级目标:1)在整个天空区域提供精确的一致性多波长图像和目录,这些调查重叠,这说明了源混乱和不匹配的同源性,以及2)提供了一个科学平台,以分析一致性的图像和分类群体,以启用整体范围的范围,以构建天体的科学和范围。对于大约200 wy的成本,JSP将允许美国(和国际)天文学界操纵旗舰数据集,并进行创新的科学研究,从太阳系对象特征,系质探测,附近的银河旋转速率和暗物质特性到校正研究的层次。它还将允许对宇宙参数和黑暗能量的性质施加最终的限制,与单独的调查相比,不确定性要小得多,并且对系统学的处理要好。

The Euclid, Rubin/LSST and Roman (WFIRST) projects will undertake flagship optical/near-infrared surveys in the next decade. By mapping thousands of square degrees of sky and covering the electromagnetic spectrum between 0.3 and 2 microns with sub-arcsec resolution, these projects will detect several tens of billions of sources, enable a wide range of astrophysical investigations by the astronomical community and provide unprecedented constraints on the nature of dark energy and dark matter. The ultimate cosmological, astrophysical and time-domain science yield from these missions will require joint survey processing (JSP) functionality at the pixel level that is outside the scope of the individual survey projects. The JSP effort scoped here serves two high-level objectives: 1) provide precise concordance multi-wavelength images and catalogs over the entire sky area where these surveys overlap, which accounts for source confusion and mismatched isophotes, and 2) provide a science platform to analyze concordance images and catalogs to enable a wide range of astrophysical science goals to be formulated and addressed by the research community. For the cost of about 200WY, JSP will allow the U.S. (and international) astronomical community to manipulate the flagship data sets and undertake innovative science investigations ranging from solar system object characterization, exoplanet detections, nearby galaxy rotation rates and dark matter properties, to epoch of reionization studies. It will also allow for the ultimate constraints on cosmological parameters and the nature of dark energy, with far smaller uncertainties and a better handle on systematics than by any one survey alone.

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