4.7 Article

MIGHTEE: total intensity radio continuum imaging and the COSMOS/XMM-LSS Early Science fields

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stab3021

关键词

techniques: interferometric; surveys; radio continuum: galaxies

资金

  1. UK Science and Technology Facilities Council [ST/N000919/1]
  2. South African Radio Astronomy Observatory
  3. Leverhulme Trust
  4. South African Research Chairs Initiative of the Department of Science and Technology
  5. National Research Foundation
  6. Science and Technology Foundation (FCT, Portugal) [PTDC/FIS-AST/29245/2017, UIDB/04434/2020, UIDP/04434/2020]
  7. UK STFC [ST/V000594/1]
  8. South African Research Chairs Initiative of the Department of Science and Innovation [77948]
  9. Bundesministerium fur Bildung und Forschung (BMBF) [05A20WM4]
  10. Italian Ministry of Foreign Affairs and International Cooperation [ZA18GR02]
  11. South African Department of Science and Technology's National Research Foundation as part of the ISARP RADIOSKY2020 Joint Research Scheme [113121]
  12. National Science Foundation [ACI-1440620]
  13. NASA [NCC5626]
  14. California Institute of Technology [NCC5626]

向作者/读者索取更多资源

MIGHTEE is a galaxy evolution survey using simultaneous radio continuum, spectropolarimetry, and spectral line observations from the South African MeerKAT telescope. The data processing strategy for MIGHTEE's total intensity continuum has been described and validated, resulting in image products forming the basis of the Early Science continuum data release. The survey covers multiple extragalactic deep fields and aims to meet survey specifications with thermal noise levels below 2 Jy beam(-1).
MIGHTEE is a galaxy evolution survey using simultaneous radio continuum, spectropolarimetry, and spectral line observations from the South African MeerKAT telescope. When complete, the survey will image similar to 20 deg(2) over the COSMOS, E-CDFS, ELAIS-S1, and XMM-Newton Large Scale Structure field (XMM-LSS) extragalactic deep fields with a central frequency of 1284 MHz. These were selected based on the extensive multiwavelength data sets from numerous existing and forthcoming observational campaigns. Here, we describe and validate the data processing strategy for the total intensity continuum aspect of MIGHTEE, using a single deep pointing in COSMOS (1.6 deg(2)) and a three-pointing mosaic in XMM-LSS (3.5 deg(2)). The processing includes the correction of direction-dependent effects, and results in thermal noise levels below 2 Jy beam(-1) in both fields, limited in the central regions by classical confusion at similar to 8 arcsec angular resolution, and meeting the survey specifications. We also produce images at similar to 5 arcsec resolution that are similar to 3 times shallower. The resulting image products form the basis of the Early Science continuum data release for MIGHTEE. From these images we extract catalogues containing 9896 and 20274 radio components in COSMOS and XMM-LSS, respectively. We also process a close-packed mosaic of 14 additional pointings in COSMOS and use these in conjunction with the Early Science pointing to investigate methods for primary beam correction of broad-band radio images, an analysis that is of relevance to all full-band MeerKAT continuum observations, and wide-field interferometric imaging in general. A public release of the MIGHTEE Early Science continuum data products accompanies this article.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据