Tracing Warm Gas through C IV Radiative Transfer
astro-ph.GA
Submitted: 2026-09-10
Updated: 2026-09-10
Comments: 18 pages, 13 figures, submitted to MNRAS
License: http://creativecommons.org/licenses/by/4.0/
The gist: The C IV λ lambda1548,1551 resonance doublet is a key tracer of warm gas (T about10 5, K) within and around galaxies.
Terminology
Abstract
The C IV λ lambda1548,1551 resonance doublet is a key tracer of warm gas (T about10 5, K) within and around galaxies. Recent observations have detected this line in both absorption and emission, revealing asymmetric profiles in galaxies and spatially extended haloes around active galactic nuclei (AGNs). Resonance scattering can strongly modify the emergent spectra and spatial distributions, complicating their interpretation. Using 3D Monte Carlo radiative transfer simulations, we study C IV resonance scattering over a broad range of column densities, intrinsic emission-line widths, and outflow velocities. We find that multiple scattering broadens the line profile and, in outflowing media, modifies the doublet ratio, R CIV, defined as the flux ratio of the K and H components at 1548 and 1551, respectively. When the outflow velocity approaches or exceeds the doublet separation (500, km,s-1), K-line photons are redistributed around the H component, driving R CIV below its intrinsic value and, in optically thick fast outflows, even below unity. We also combine photoionization models with resonance scattering to investigate extended C IV haloes around AGNs and compare them with He II lambda1640 emission. Simple photoionization models do not produce C IV emission more extended than He II, whereas resonance scattering redistributes locally produced and central-source C IV photons to larger radii. These results demonstrate that the C IV doublet ratio and spatial distribution provide complementary diagnostics of warm gas.
Related papers
- Apparent Stability in Self-Gravitating Turbulence and the Evolution of Molecular Clouds
- Two sets of potential-density basis pairs for the study of radial perturbations in collisionless spherical stellar systems
- Constraining reionization-era Ly alpha escape with JELS-MUSE: a highly complete H alpha-selected sample at z about6.1
- Deriving volume density profiles of filaments from observed surface densities
- Little Red Dots and Supermassive Black Hole Seed Formation in Ultralight Dark Matter Halos
- MEGATRON: how the first stars can create an iron metallicity plateau in the smallest dwarf galaxies