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May 6, 2026Monthly Notices of the Royal Astronomical Society1 citationsOpen Access

Subaru High- z Exploration of Low-Luminosity Quasars (SHELLQs). XXV. Large-scale environments of low-luminosity quasars at z ∼ 6 traced by Lyα emitters

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JAJunya AritaNKNobunari KashikawaYMYoshiki Matsuoka

Key Points

  • This research aims to examine the environments of low-luminosity quasars and their relationship to nearby galaxies.
  • Utilized Subaru/Hyper-Suprime Cam for imaging low-luminosity quasars.
  • Identified Lyman α emitters in narrowband imaging.
  • Measured local LAE overdensity around selected quasars.
  • Analyzed host stellar mass measurements from JWST.
  • One quasar is in an overdense region with a local LAE overdensity of 1.97 ± 0.40.
  • Other quasar fields showed no significant overdensity.
  • No correlation was detected between LAE overdensities and the characteristics of host galaxies or black holes.

Abstract

Abstract High-z quasars are believed to reside in massive dark matter haloes (DMHs), suggesting that they reside in galaxy overdense regions. However, previous observations have shown a range of environments around them. These fields have been limited to luminous quasars (M1450 ≲ −25), for which photoevaporation may hinder galaxy formation in their vicinity. Here, we present Subaru/Hyper-Suprime Cam observations of the environments of four low-luminosity quasars (−24 M1450 −22) at z ∼ 6.18, which are expected to have a smaller photoevaporation effect. We detect Lyman α emitters (LAEs) with narrowband NB872 imaging, and measure the local LAE overdensity. One quasar (J0844−0132) resides in an overdense region (δLAE = 1.97 ± 0.40), whereas the other three fields are consistent with no overdensity. These results hold over the proximity zone of each quasar, suggesting that the diverse environment around quasars is independent of photoevaporation. We find no significant correlation between the LAE overdensities and the characteristics of host galaxies and supermassive black holes. Our quasars have host stellar mass measurements from JWST, allowing us to compare them with the LAE overdensity around galaxies without quasar activity with comparable stellar masses. We find that the LAE overdensity in the J0844−0132 field is stronger than that of galaxies with similar stellar mass at z ∼ 6.

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Cite This Study

Arita et al. (2026) studied this question.

synapsesocial.com/papers/69faa22704f884e66b532d7dhttps://doi.org/10.1093/mnras/stag784
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