We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and consistent reanalysis of broad emission-line reverberation-mapping data. From objects with multiple line measurements, we find that the highest precision measure of the virial product is obtained by using the cross-correlation function centroid (as opposed to the cross-correlation function peak) for the time delay and the line dispersion (as opposed to full width half maximum) for the line width and by measuring the line width in the variable part of the spectrum. Accurate line-width measurement depends critically on avoiding contaminating features, in particular the narrow components of the emission lines. We find that the precision (or rando...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
The determination of the central black hole mass is crucial to the understanding of active galactic ...
Context.Scatter around the relationship between central black hole masses in active galactic nuclei ...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
The masses and emission-line region sizes of active galactic nuclei (AGNs) can be measured by "rever...
It is well known that reverberation mapping of active galactic nuclei (AGNs) reveals a relationship ...
International audienceContext: .Scatter around the relationship between central black hole masses in...
International audienceContext: .Scatter around the relationship between central black hole masses in...
Measuring the masses of supermassive black holes in active galactic nuclei (AGN) allows us to trace ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
The determination of the central black hole mass is crucial to the understanding of active galactic ...
Context.Scatter around the relationship between central black hole masses in active galactic nuclei ...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
We present improved black hole masses for 35 active galactic nuclei (AGNs) based on a complete and c...
The masses and emission-line region sizes of active galactic nuclei (AGNs) can be measured by "rever...
It is well known that reverberation mapping of active galactic nuclei (AGNs) reveals a relationship ...
International audienceContext: .Scatter around the relationship between central black hole masses in...
International audienceContext: .Scatter around the relationship between central black hole masses in...
Measuring the masses of supermassive black holes in active galactic nuclei (AGN) allows us to trace ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
Context. It is currently only possible to accurately weigh, through reverberation mapping (RM), the ...
The determination of the central black hole mass is crucial to the understanding of active galactic ...
Context.Scatter around the relationship between central black hole masses in active galactic nuclei ...