English

Early Structure Formation from Primordial Density Fluctuations with a Blue, Tilted Power Spectrum: High-Redshift Galaxies

Astrophysics of Galaxies 2024-01-25 v3 Cosmology and Nongalactic Astrophysics

Abstract

Recent observations by the James Webb Space Telescope (JWST) discovered unexpectedly abundant luminous galaxies at high redshift, posing possibly a severe challenge to popular galaxy formation models. We study early structure formation in a cosmological model with a blue, tilted power spectrum (BTPS) given by P(k)kmsP(k) \propto k^{m_{\rm s}} with ms>1m_{\rm s} > 1 at small length scales. We run a set of cosmological NN-body simulations and derive the abundance of dark matter halos and galaxies under simplified assumptions on star formation efficiency. The enhanced small-scale power allows rapid nonlinear structure formation at z>7z>7, and galaxies with stellar mass exceeding 1010M10^{10}\,M_\odot can be formed by z=9z=9. Because of frequent mergers, the structure of galaxies and galaxy groups appears clumpy. The BTPS model reproduces the observed stellar mass density at z=79z=7-9, and thus eases the claimed tension between galaxy formation theory and recent JWST observations. The large-scale structure of the present-day Universe is largely unaffected by the modification of the small-scale power spectrum. We conduct a systematic study by varying the slope of the small-scale power spectrum to derive constraints on the BTPS model from a set of observations of high-redshift galaxies.

Keywords

Cite

@article{arxiv.2306.11993,
  title  = {Early Structure Formation from Primordial Density Fluctuations with a Blue, Tilted Power Spectrum: High-Redshift Galaxies},
  author = {Shingo Hirano and Naoki Yoshida},
  journal= {arXiv preprint arXiv:2306.11993},
  year   = {2024}
}

Comments

10 pages, 7 figures, 1 table, accepted for publication in ApJ