Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73 that has a star-formation rate (SFR) of ~270 M⊙ yr-1 (derived from optical and near-infrared spectroscopy). Taking the magnification of the system (~12) and the SFR into account, the expected flux density of any associated radio emission at 1.4 GHz is predicted to be just 0.1 mJy. However, the lens system is found to be coincident with a radio source detected in the NRAO Very Large Array (VLA) Sky Survey with a flux density of ~5 mJy. If this flux density is attributed to the lensed LBG then it would imply a SFR ~ 11 000 M⊙ yr-1, in contrast with the optical and near-infrared derived value. Aims: We want to investigate the radio properties o...
We present an analysis of the radio properties of large samples of Lyman break galaxies (LBGs) at z~...
We predict the abundance of giant gravitational arcs produced by submillimeter galaxies (SMGs) lense...
Context.Previous authors have reported the detection of intrinsically faint sub-mm emission lensed ...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o’clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshif...
Context. The 8 o’clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshif...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
International audienceWe present an analysis of the radio properties of large samples of Lyman break...
We describe the selection, observations, and analysis of four potential gravitationally lensed radio...
We present an analysis of the radio properties of large samples of Lyman break galaxies (LBGs) at z~...
We predict the abundance of giant gravitational arcs produced by submillimeter galaxies (SMGs) lense...
Context.Previous authors have reported the detection of intrinsically faint sub-mm emission lensed ...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o'clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshift z = 2.73...
Context. The 8 o’clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshif...
Context. The 8 o’clock arc is a gravitationally lensed Lyman break galaxy (LBG) at redshif...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
The gravitational lens system CLASS B2108+213 has two lensed images separated by 4.56 arcsec. Such a...
International audienceWe present an analysis of the radio properties of large samples of Lyman break...
We describe the selection, observations, and analysis of four potential gravitationally lensed radio...
We present an analysis of the radio properties of large samples of Lyman break galaxies (LBGs) at z~...
We predict the abundance of giant gravitational arcs produced by submillimeter galaxies (SMGs) lense...
Context.Previous authors have reported the detection of intrinsically faint sub-mm emission lensed ...