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Galaxy properties from the outskirts to the core of a protocluster at z = 3.70

  • Jun Toshikawa*
  • , Stijn Wuyts
  • , Nobunari Kashikawa
  • , Hisakazu Uchiyama
  • , Malcolm Bremer
  • , Marcin Sawicki
  • , Yoshiaki Ono
  • , Mariko Kubo
  • , Kei Ito
  • , Sadman s Ali
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

4 Citations (Scopus)

Abstract

We study the dependence of galaxy properties on their spatial position within a protocluster by carrying out follow-up spectroscopy on a protocluster candidate selected from the wide-field imaging of the Hyper Suprime Cam Subaru Strategic Programme. In the 4.5𝜎 surface-overdense region of 𝑔-dropout galaxies, we now spectroscopically confirm that thirteen galaxies, at least, are clustering in a narrow redshift range of Δ𝑧 < 0.05 around 𝑧 = 3.70. Next, we investigate the physical properties and three-dimensional (3D) distribution of the protocluster’s member galaxies. Based on spectroscopically-confirmed𝑔-dropout galaxies, we find an overabundance of rest-frame ultraviolet (UV) bright galaxies in the protocluster. The UV brightest protocluster member turns out to be an active galactic nucleus, and the other UV brighter members tend to show smaller Ly𝛼 equivalent widths than field counterparts. The member galaxies tend to densely populate near the 3D centre of the protocluster,but the separation from the nearest neighbour rather than the distance from the centre of the protocluster is more tightly correlated to galaxy properties, implying that the protocluster is still in an early phase of cluster formation and only close neighbours have a significant impact on the physical properties of protocluster members. The number density of massive galaxies, selected from an archival photometric-redshift catalogue, is higher near the centre of the protocluster, while dusty starburst galaxies are distributed on the outskirts. The protocluster thus appears to consist of multiple galaxy populations, whose spatial distributions reveal the developmental stage of the galaxy cluster.
Original languageEnglish
Article numberstaf197
Pages (from-to)3561-3574
Number of pages14
JournalMonthly Notices of the Royal Astronomical Society
Volume537
Issue number4
Early online date5 Feb 2025
DOIs
Publication statusE-pub ahead of print - 5 Feb 2025

Bibliographical note

Publisher Copyright:
© 2025 The Author(s). Published by Oxford University Press on behalf of Royal Astronomical Society.

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