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Title
ASPIRE: The Environments and Dark Matter Halos of Luminous Quasars in the Epoch of Reionization
KIAS Author
Jun, Hyunsung D.
Journal
ASTROPHYSICAL JOURNAL, 2026
Archive
Abstract
We present a systematic study of the environments of 25 luminous quasars at z > 6.5 from the ASPIRE program. Using JWST/NIRCam wide-field slitless spectroscopy data, we identified 487 galaxies at 5.3 less than or similar to z less than or similar to 7.0 exhibiting [O III] emission. Among these, 122 [O III] emitters lie within divided by Delta v(los)divided by < 1000 km s(-1) of the quasars, corresponding to a similar to 9.4-fold enhancement relative to the average galaxy density at other redshifts. Furthermore, we identified 16 [C II]-emitting galaxies at the quasar redshifts from Atacama Large Millimeter/submillimeter Array (ALMA) mosaic observations. A cross-correlation function analysis between quasars and [O III]+[C II] emitters yields a cross-correlation length of r(0)(QG) = 8.68 (+ 0.51)(-0.55) h(-1) cMpc and an autocorrelation of r(0)(QQ )= 15.7 6(- 2.70 )(+2.48) h(-1 )cMpc , indicating that z similar to 7 quasars reside in dark matter halos with M-halo = 10(12.27) (-0.26) (+0.21) M circle dot and have a quasar lifetime of t(Q) = 10 (7.05 )(-1.01) (+0.95 )yr . Notably, the number of [O III]-emitting galaxies at quasar redshifts varies significantly from field to field, ranging from 0 to 20, highlighting a diverse quasar environment. Remarkably, seven quasars trace significant galaxy overdensities (i.e., protoclusters), with delta(gal) > 5 within a volume of V similar to 500 cMpc(3). We also find that divided by Delta v(los)divided by increases rapidly toward smaller galaxy-quasar separations in protocluster fields, consistent with galaxy kinematics around extremely massive halos in cosmological simulations. By combining JWST and ALMA data, we reveal the complex and diverse environments of these early quasars, providing robust evidence that the earliest luminous quasars are effective tracers of galaxy overdensities, albeit with substantial field-to-field variation.