The whole picture of the large-scale structure of the CL1604 supercluster at z ∼ 0.9
Abstract
We present the large-scale structure over a more than 50 comoving Mpc scale at z ∼ 0.9 where the CL1604 supercluster, which is one of the largest structures ever known at high redshifts, is embedded. The wide-field deep imaging survey by the Subaru Strategic Program with the Hyper Suprime-Cam reveals that the already-known CL1604 supercluster is a mere part of larger-scale structure extending to both the north and the south. We confirm that there are galaxy clusters at three slightly different redshifts in the northern and southern sides of the supercluster by determining the redshifts of 55 red-sequence galaxies and 82 star-forming galaxies in total via follow-up spectroscopy with Subaru/FOCAS and Gemini-N/GMOS. This suggests that the structure known as the CL1604 supercluster is the tip of the iceberg. We investigate the stellar population of the red-sequence galaxies using 4000 Å break and Balmer Hδ absorption lines. Almost all of the red-sequence galaxies brighter than 21.5mag in the z band show an old stellar population of ≳ 2Gyr. The comparison of composite spectra of the red-sequence galaxies in the individual clusters show that the galaxies at a similar redshift have a similar stellar population age, even if they are located ∼ 50Mpc apart from each other. However, there could be a large variation in the star formation history. Therefore, it is likely that galaxies associated with the large-scale structure on a 50 Mpc scale formed at almost the same time, have assembled into the denser regions, and then have evolved with different star formation history along the hierarchical growth of the cosmic web.
- Publication:
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Publications of the Astronomical Society of Japan
- Pub Date:
- December 2019
- DOI:
- arXiv:
- arXiv:1905.13437
- Bibcode:
- 2019PASJ...71..112H
- Keywords:
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- galaxies: clusters: general;
- galaxies: evolution;
- galaxies: groups: general;
- galaxies: high-redshift;
- galaxies: stellar content;
- Astrophysics - Astrophysics of Galaxies
- E-Print:
- 21 pages, 9 figures, 5 tables, accepted for publication in PASJ