The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a model that explains this comprehensively does not exist. The new LOFAR all Sky Survey (LoTSS) deep field, ELAIS-N1, allows exploration of this relation in previously unexplored regions of parameter space of radio frequency (150 MHz), luminosity (L150a <a1024.7), redshift (zaa 1), and stellar mass M∗a <a 1011.4. We present accurate deblended far-infrared (FIR) flux measurements with robust errors at 24, 100, 160, 250, 350, and 500 μm from Spitzer and the Herschel Space Observatory using XID+. We find that the FIRC has a strong mass dependence, the evolution of which takes the form qTIR(M∗) = (2.00a ± a 0.01)+(a0.22a ±a 0.02)(log(M/M∗)a10....
In the era of deep and wide-field surveys (e.g. SDSS, LSST, LOFAR, SKA), we have access to an ever-i...
International audienceIn this paper, we investigate the relationship between 150 MHz luminosity and ...
Aims: We aim to study the far-infrared radio correlation (FIRC) at 150 MHz in the local Universe (a...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
International audienceThe far-infrared radio correlation (FIRC) is one of the strongest correlations...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
In this paper, we investigate the relationship between 150 MHz luminosity and the star-formation rat...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
The radio and far-infrared luminosities of star-forming galaxies are tightly correlated over several...
We have exploited LOFAR deep observations of the Lockman Hole field at 150 MHz to investigate the re...
In this paper, we investigate the relationship between 150 MHz luminosity and the star-formation rat...
In the era of deep and wide-field surveys (e.g. SDSS, LSST, LOFAR, SKA), we have access to an ever-i...
International audienceIn this paper, we investigate the relationship between 150 MHz luminosity and ...
Aims: We aim to study the far-infrared radio correlation (FIRC) at 150 MHz in the local Universe (a...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
International audienceThe far-infrared radio correlation (FIRC) is one of the strongest correlations...
The far-infrared radio correlation (FIRC) is one of the strongest correlations in astronomy, yet a m...
In this paper, we investigate the relationship between 150 MHz luminosity and the star-formation rat...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
The radio and far-infrared luminosities of star-forming galaxies are tightly correlated over several...
We have exploited LOFAR deep observations of the Lockman Hole field at 150 MHz to investigate the re...
In this paper, we investigate the relationship between 150 MHz luminosity and the star-formation rat...
In the era of deep and wide-field surveys (e.g. SDSS, LSST, LOFAR, SKA), we have access to an ever-i...
International audienceIn this paper, we investigate the relationship between 150 MHz luminosity and ...
Aims: We aim to study the far-infrared radio correlation (FIRC) at 150 MHz in the local Universe (a...