English

How massive and clumpy must a quasar wind be to create emission line blueshifts?

Astrophysics of Galaxies 2026-07-27 v1 High Energy Astrophysical Phenomena

Abstract

Blue asymmetries (``Blueshifts'') in the C IV 1550A emission line are common in luminous quasars. If they are formed in winds, how much energy, momentum and mass do those winds transport? We address this question by considering how much mass must be supplied through the line-forming region to maintain a given density and ionization state. Using a combination of 1D analytic and 2D numerical models, we find that for blueshifted C IV lines to form in a wind, the wind must have mass outflow rates of 50fV\sim 50 f_V times the accretion rate, where fV1f_V \leq 1 is the volume filling factor accounting for clumping. Our results therefore disfavour line formation in a smooth disc wind and point towards one of two scenarios: either the wind is clumpy, with required clumping factors suggestively close to those in hot star winds; alternatively, if the mass is instead swept up from the ambient medium, the wind need not be clumpy and MHD and radiative winds can provide the original source of momentum and energy. The power of the outflow depends on the square of the terminal velocity of the flow, vv_\infty. If the wind is also the BAL outflow, with v10,000 km s1v_\infty \sim10,000~{\rm km~s}^{-1}, the wind power is significant and important for feedback. There are various caveats which moderate our conclusions, motivating i) a better theoretical understanding of wind driving and clump formation physics and ii) improved observational constraints on the physical conditions where the lines are formed.

Cite

@article{arxiv.2607.25035,
  title  = {How massive and clumpy must a quasar wind be to create emission line blueshifts?},
  author = {James H. Matthews},
  journal= {arXiv preprint arXiv:2607.25035},
  year   = {2026}
}

Comments

12 pages, 6 figures, accepted to MNRAS