arXiv · 2610.07624
Radiation pressure powers quasar broad absorption line winds but fails to drive galaxy feedback
Abstract
Most cosmological simulations invoke quasar-driven winds as the primary mechanism quenching star formation in massive galaxies, assuming wind momentum flux approaches the radiation-pressure maximum, $L/c$. Using 81,388 broad absorption line troughs from the SDSS-IV DR16 quasar catalog and detailed mock trough spectra, we detect line locking, a spectral signature of radiation-pressure-driven outflows, in 60 to 70 percent of troughs, demonstrating that radiative line driving dominates wind acceleration and ruling out alternative mechanisms. Direct measurement of the wind energy budget yields a median kinetic luminosity of only 0.01 percent of bolometric luminosity, 50 times below the level required for effective feedback. Line-driven quasar winds are therefore insufficiently powerful to quench star formation, challenging the primary physical mechanism invoked for black hole feedback in galaxy formation models.
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Braden Seefeldt-Gail, Lluís Mas-Ribas, Norman Murray. 2026-10-06. Radiation pressure powers quasar broad absorption line winds but fails to drive galaxy feedback. https://arxiv.org/abs/2610.07624
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