TY - JOUR
T1 - Bees
T2 - Quasar Lifetime Measurements from Extended Rest-optical Emission Line Nebulae at z ∼ 6
AU - Durovcikova, Dominika
AU - Eilers, Anna-Christina
AU - Ishikawa, Yuzo
AU - Yue, Minghao
AU - Vestergaard, Marianne
AU - Davies, Frederick B.
AU - Schindler, Jan-Torge
AU - Fan, Xiaohui
AU - Arrigoni Battaia, Fabrizio
AU - Volonteri, Marta
AU - Simcoe, Robert A.
AU - Hennawi, Joseph F.
AU - Blecha, Laura
AU - Andika, Irham T.
AU - Bosman, Sarah E. I.
AU - Bieri, Rebekka
PY - 2026/5/11
Y1 - 2026/5/11
N2 - 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.
AB - 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.
KW - Ly-alpha-emission
KW - Black-hole masses
KW - Circumgalactic medium
KW - H-alpha
KW - Luminous quasars
KW - Active galaxies
KW - Duty cycle
KW - Epoch
KW - Feedback
KW - Sample
U2 - 10.3847/1538-4357/ae626b
DO - 10.3847/1538-4357/ae626b
M3 - Journal article
SN - 0067-0049
VL - 1003
JO - Astrophysical Journal
JF - Astrophysical Journal
IS - 1
M1 - 17
ER -