2020MNRAS.495.1188M


Query : 2020MNRAS.495.1188M

2020MNRAS.495.1188M - Mon. Not. R. Astron. Soc., 495, 1188-1208 (2020/June-2)

The e-MERGE Survey (e-MERLIN Galaxy Evolution Survey): overview and survey description.

MUXLOW T.W.B., THOMSON A.P., RADCLIFFE J.F., WRIGLEY N.H., BESWICK R.J., SMAIL I., McHARDY I.M., GARRINGTON S.T., IVISON R.J., JARVIS M.J., PRANDONI I., BONDI M., GUIDETTI D., ARGO M.K., BACON D., BEST P.N., BIGGS A.D., CHAPMAN S.C., COPPIN K., CHEN H., GARRATT T.K., GARRETT M.A., IBAR E., KNEIB J.-P., KNUDSEN K.K., KOOPMANS L.V.E., MORABITO L.K., MURPHY E.J., NJERI A., PEARSON C., PEREZ-TORRES M.A., RICHARDS A.M.S., ROTTGERING H.J.A., SARGENT M.T., SERJEANT S., SIMPSON C., SIMPSON J.M., SWINBANK A.M., VARENIUS E. and VENTURI T.

Abstract (from CDS):

We present an overview and description of the e-MERGE Survey (e-MERLIN Galaxy Evolution Survey) Data Release 1 (DR1), a large program of high-resolution 1.5-GHz radio observations of the GOODS-N field comprising ∼140 h of observations with enhanced-Multi-Element Remotely Linked Interferometer Network (e-MERLIN) and ∼40 h with the Very Large Array (VLA). We combine the long baselines of e-MERLIN (providing high angular resolution) with the relatively closely packed antennas of the VLA (providing excellent surface brightness sensitivity) to produce a deep 1.5-GHz radio survey with the sensitivity (∼1.5 µJy beam–1), angular resolution (0.2-0.7 arcsec) and field-of-view (∼15 x 15 arcmin2) to detect and spatially resolve star-forming galaxies and active galactic nucleus (AGN) at z >= 1. The goal of e-MERGE is to provide new constraints on the deep, sub-arcsecond radio sky which will be surveyed by SKA1-mid. In this initial publication, we discuss our data analysis techniques, including steps taken to model in-beam source variability over an ∼20-yr baseline and the development of new point spread function/primary beam models to seamlessly merge e-MERLIN and VLA data in the uv plane. We present early science results, including measurements of the luminosities and/or linear sizes of ∼500 galaxies selected at 1.5 GHz. In combination with deep Hubble Space Telescope observations, we measure a mean radio-to-optical size ratio of re–MERGE/rHST ∼ 1.02 ± 0.03, suggesting that in most high-redshift galaxies, the ∼GHz continuum emission traces the stellar light seen in optical imaging. This is the first in a series of papers that will explore the ∼kpc-scale radio properties of star-forming galaxies and AGN in the GOODS-N field observed by e-MERGE DR1.

Abstract Copyright: © 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): Galaxies: evolution - Galaxies: high-redshift - radio continuum: galaxies

Status at CDS : Examining the need for a new acronym.

Simbad objects: 9

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Number of rows : 9
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 3C 84 Sy2 03 19 48.1599902040 +41 30 42.108850836   13.10 12.48 11.09   ~ 4008 3
2 NAME SMM J123635+621239 AGN 12 36 34.528 +62 12 41.39 25.26 23.8632 24.53 23.18 22.7131 ~ 121 0
3 NAME Hubble Deep Field reg 12 36 49.5 +62 12 58           ~ 1922 1
4 NAME GOODS-N Field reg 12 36 55.0 +62 14 15           ~ 1156 1
5 [VV98] J124129.6+602042 BLL 12 41 29.5906506264 +60 20 41.320222836   18.30 18.11     ~ 53 0
6 7C 130046.50+580438.00 Bla 13 02 52.46528286 +57 48 37.6093029   20.47 19.76 20.63   ~ 114 1
7 ICRF J131327.9+673550 G 13 13 27.98902761 +67 35 50.3599652           ~ 57 1
8 3C 286 Sy1 13 31 08.2883506368 +30 30 32.960091564   17.51 17.25     ~ 4341 2
9 Mrk 668 Sy1 14 07 00.39441712 +28 27 14.6901341   16.13 15.35 10.29   ~ 773 2

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