...
首页> 外文期刊>Experimental Astronomy >SPACE: the spectroscopic all-sky cosmic explorer
【24h】

SPACE: the spectroscopic all-sky cosmic explorer

机译:空间:光谱全天空宇宙探索者

获取原文
获取原文并翻译 | 示例
           

摘要

We describe the scientific motivations, the mission concept and the instrumentation of SPACE, a class-M mission proposed for concept study at the first call of the ESA Cosmic-Vision 2015–2025 planning cycle. SPACE aims to produce the largest three-dimensional evolutionary map of the Universe over the past 10 billion years by taking near-IR spectra and measuring redshifts for more than half a billion galaxies at 0 < z < 2 down to AB~23 over 3π sr of the sky. In addition, SPACE will also target a smaller sky field, performing a deep spectroscopic survey of millions of galaxies to AB~26 and at 2 < z < 10 +. These goals are unreachable with ground-based observations due to the ≈500 times higher sky background (see e.g. Aldering, LBNL report number LBNL-51157, 2001). To achieve the main science objectives, SPACE will use a 1.5 m diameter Ritchey-Chretien telescope equipped with a set of arrays of Digital Micro-mirror Devices covering a total field of view of 0.4 deg2, and will perform large-multiplexing multi-object spectroscopy (e.g. ≈6000 targets per pointing) at a spectral resolution of R~400 as well as diffraction-limited imaging with continuous coverage from 0.8 to 1.8 μm. Owing to the depth, redshift range, volume coverage and quality of its spectra, SPACE will reveal with unique sensitivity most of the fundamental cosmological signatures, including the power spectrum of density fluctuations and its turnover. SPACE will also place high accuracy constraints on the dark energy equation of state parameter and its evolution by measuring the baryonic acoustic oscillations imprinted when matter and radiation decoupled, the distance-luminosity relation of cosmological supernovae, the evolution of the cosmic expansion rate, the growth rate of cosmic large-scale structure, and high-z galaxy clusters. The datasets from the SPACE mission will represent a long lasting legacy for the whole astronomical community whose data will be mined for many years to come.
机译:我们描述了科学动机,任务概念和SPACE的仪器,这是在ESA Cosmic-Vision 2015–2025年规划周期的首次会议上提出的用于概念研究的M类任务。 SPACE的目的是通过获取近红外光谱并测量0 ,并且在光谱分辨率为R〜400的条件下执行大型多路复用多目标光谱学(例如,每个指向≈6000个目标),以及连续成像范围从0.8到1.8μm的衍射极限成像。由于其深度,红移范围,体积覆盖范围和光谱质量,SPACE将以独特的灵敏度揭示大多数基本宇宙学特征,包括密度涨落的功率谱及其周转率。通过测量物质和辐射解耦时产生的重音声振荡,宇宙超新星的距离-光度关系,宇宙膨胀率的演变,增长,SPACE还将对状态参数的暗能量方程及其演化施加高精度约束。宇宙大规模结构的速率和高Z星系星团。 SPACE任务的数据集将代表整个天文学界的长期遗产,他们的数据将在未来很多年内被挖掘出来。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号