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19982022
most citedThe LOFAR Two-metre Sky Survey -- V. Second data release

489 citations · 893 across the 19 of their papers we have counts for

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astro-ph.GA2022489 cited

The LOFAR Two-metre Sky Survey -- V. Second data release

T. W. Shimwell, M. J. Hardcastle, C. Tasse +103

In this data release from the LOFAR Two-metre Sky Survey (LoTSS) we present 120-168MHz images covering 27% of the northern sky. Our coverage is split into two regions centred at ap…

astro-ph.GA2021

Using strong lensing to understand the microJy radio emission in two radio quiet quasars at redshift 1.7

P. Hartley, N. Jackson, S. Badole +3

The radio quasar luminosity function exhibits an upturn around W Hz that is well-modelled by a star-forming host galaxy population. This distribution…

astro-ph.GA202020 cited

VLA and ALMA observations of the lensed radio-quiet quasar SDSS J0924+0219: a molecular structure in a 3 microJy radio source

S. Badole, N. Jackson, P. Hartley +3

We present Karl G. Jansky Very Large Array (VLA) and Atacama Large Millimetre Array (ALMA) observations of SDSS J0924+0219, a z = 1.524 radio-quiet lensed quasar with an intrinsic…

astro-ph.GA2020

SuperCLASS -- II: Photometric Redshifts and Characteristics of Spatially-Resolved Jy Radio Sources

Sinclaire M. Manning, Caitlin M. Casey, Chao-Ling Hung +12

We present optical and near-infrared imaging covering a 1.53 deg region in the Super-Cluster Assisted Shear Survey (SuperCLASS) field, which aims to make the first robust…

astro-ph.GA2020

SuperCLASS -- I. The Super CLuster Assisted Shear Survey: Project overview and Data Release 1

Richard A. Battye, Michael L. Brown, Caitlin M. Casey +24

The SuperCLuster Assisted Shear Survey (SuperCLASS) is a legacy programme using the e-MERLIN interferometric array. The aim is to observe the sky at L-band (1.4 GHz) to a r.m.s. of…

astro-ph.GA2018

The Strong Gravitational Lens Finding Challenge

R. Benton Metcalf, M. Meneghetti, Camille Avestruz +33

Large scale imaging surveys will increase the number of galaxy-scale strong lensing candidates by maybe three orders of magnitudes beyond the number known today. Finding these rare…