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Bees: Quasar Lifetime Measurements from Extended Rest-optical Emission Line Nebulae at z ∼ 6

Dominika Durovcikova*, Anna-Christina Eilers, Yuzo Ishikawa, Minghao Yue, Marianne Vestergaard, Frederick B. Davies, Jan-Torge Schindler, Xiaohui Fan, Fabrizio Arrigoni Battaia, Marta Volonteri, Robert A. Simcoe, Joseph F. Hennawi, Laura Blecha, Irham T. Andika, Sarah E. I. Bosman, Rebekka Bieri

*Corresponding author for this work

Research output: Contribution to journalJournal articleResearchpeer-review

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Abstract

Measurements of quasar lifetimes at high redshift indicate that the earliest billion-solar-mass supermassive black holes (SMBHs) have only been active as luminous quasars for less than a million years. Recently, extended Ly alpha nebulae around z similar to 6 quasars have revealed that these short observed lifetimes are unlikely to be a sight-line-dependent effect. However, the interpretation of Ly alpha emission is not straightforward due to its resonant nature. In this work, we use rest-frame optical emission lines, which more directly trace photoionization by the quasar, to unambiguously validate the short line-of-sight quasar lifetimes observed at early cosmic epochs. We use deep James Webb Space Telescope/NIRSpec integral field unit observations of five z similar to 6 quasars with small proximity zones to search for their extended emission line nebulae in H alpha and [O III]5007, and detect extended emission in both emission lines around four quasars in our sample. We then use the light-crossing time of these nebulae to measure quasar lifetimes along transverse sight lines. Using their H alpha nebulae, we also confirm that recombination is likely the dominant emission mechanism behind their previously detected Ly alpha nebulae. Our results confirm the existence of high-redshift quasars with extremely short lifetimes, tQ less than or similar to 105 yr, hosting billion-solar-mass black holes, indicating that rapid or obscured accretion is likely responsible for the assembly of SMBHs in the early Universe.
Original languageEnglish
Article number17
JournalAstrophysical Journal
Volume1003
Issue number1
Number of pages18
ISSN0067-0049
DOIs
Publication statusPublished - 11 May 2026

Keywords

  • Ly-alpha-emission
  • Black-hole masses
  • Circumgalactic medium
  • H-alpha
  • Luminous quasars
  • Active galaxies
  • Duty cycle
  • Epoch
  • Feedback
  • Sample

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