We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mass Assembly (GAMA) project over the Herschel Astrophysical Terahertz Large Area Survey (Herschel-ATLAS) Phase 1 fields. Classifying the radio sources in terms of their optical spectra, we find that strong-emission-line sources (‘high-excitation radio galaxies’) have, on average, a factor of ∼4 higher 250-μm Herschel luminosity than weak-line (‘low-excitation’) radio galaxies and are also more luminous than magnitude-matched radio-quiet galaxies at the same redshift. Using all five H-ATLAS bands, we show that this difference in luminosity between the emission-line classes arises mostly from a difference in the average dust temperature; strong-e...
We study the environments of low- and high-excitation radio galaxies (LERGs and HERGs, respectively)...
We perform a stacking analysis of H-ATLAS data in order to obtain isothermal dust temperatures and r...
We use the Herschel-ATLAS survey to conduct the first large-scale statistical study of the submillim...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Ma...
We perform a stacking analysis of Herschel Astrophysical Terahertz Large Area Survey (H-ATLAS) data ...
We examine the relationship between star formation and active galactic nuclei (AGN) activity by cons...
We use the Herschel-Astrophysical Terahertz Large Area Survey (ATLAS) science demonstration data to ...
We use the Herschel-Astrophysical Terahertz Large Area Survey (ATLAS) science demonstration data to ...
We examine the relationship between star formation and AGN activity by constructing matched samples ...
We study the environments of low- and high-excitation radio galaxies (LERGs and HERGs, respectively)...
We study the environments of low- and high- excitation radio galaxies (LERGs and HERGs respectively)...
We study the environments of low- and high-excitation radio galaxies (LERGs and HERGs, respectively)...
We perform a stacking analysis of H-ATLAS data in order to obtain isothermal dust temperatures and r...
We use the Herschel-ATLAS survey to conduct the first large-scale statistical study of the submillim...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Mas...
We have constructed a sample of radio-loud objects with optical spectroscopy from the Galaxy and Ma...
We perform a stacking analysis of Herschel Astrophysical Terahertz Large Area Survey (H-ATLAS) data ...
We examine the relationship between star formation and active galactic nuclei (AGN) activity by cons...
We use the Herschel-Astrophysical Terahertz Large Area Survey (ATLAS) science demonstration data to ...
We use the Herschel-Astrophysical Terahertz Large Area Survey (ATLAS) science demonstration data to ...
We examine the relationship between star formation and AGN activity by constructing matched samples ...
We study the environments of low- and high-excitation radio galaxies (LERGs and HERGs, respectively)...
We study the environments of low- and high- excitation radio galaxies (LERGs and HERGs respectively)...
We study the environments of low- and high-excitation radio galaxies (LERGs and HERGs, respectively)...
We perform a stacking analysis of H-ATLAS data in order to obtain isothermal dust temperatures and r...
We use the Herschel-ATLAS survey to conduct the first large-scale statistical study of the submillim...