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Published 2022 | Version v1
Journal article

Galaxy distributions as fractal systems

  • 1. Valongo Observatory, Universidade Federal do Rio de Janeiro, Rio de Janeiro (Brazil)
  • 2. Instituto de Astrofísica de La Plata, CONICET-UNLP, La Plata (Argentina)
  • 3. Department of Astronomy, Observatório Nacional, Rio de Janeiro (Brazil)
  • 4. Physics Institute, Universidade Federal do Rio de Janeiro, Rio de Janeiro (Brazil)

Description

This paper discusses if large scale galaxy distribution samples containing almost one million objects can be characterized as fractal systems. The analysis performed by Teles et al. (Phys Lett B 813:136034, 2021) on the UltraVISTA DR1 survey is extended here to the SPLASH and COSMOS2015 catalogs, hence adding 750k new galaxies with measured redshifts to the studied samples. The standard ΛCDM cosmology having H0 = (70 ± 5) km/s/Mpc and number density tools required for describing these galaxy distributions as single fractal systems with dimension D are adopted. We use the luminosity distance dL, redshift distance dz and galaxy area distance (transverse comoving distance) dG as relativistic distance definitions to derive galaxy number densities in the redshift interval 0.1 ≤ z ≤ 4 at volume limited subsamples defined by absolute magnitudes in the K-band. Similar to the findings of Teles et al. (2021), the results show two consecutive redshift scales where galaxy distribution data behave as single fractal structures. For z < 1 we found D = 1.00 ± 0.12 for the SPLASH galaxies, and D = 1, 39 ± 0.19 for the COSMOS2015. For 1 ≤ z ≤ 4 we respectively found D = 0.830.37+0.36 and D = 0.540.26+0.27. These results were verified to be robust under the assumed Hubble constant uncertainty. Calculations considering blue and red galaxies subsamples in both surveys showed that the fractal dimensions of blue galaxies as basically unchanged, but the ones for the red galaxies changed mostly to smaller values, meaning that D may be seen as a more intrinsic property of the distribution of objects in the Universe, therefore allowing for the fractal dimension to be used as a tool to study different populations of galaxies. All results confirm the decades old theoretical prediction of a decrease in the fractal dimension for z > 1.

Availability note (English)

Available from: http://dx.doi.org/10.1140/epjc/s10052-022-10866-0

Additional details

Publishing Information

Journal Title
European Physical Journal. C, Particles and Fields (Online)
Journal Volume
82
Journal Issue
10
Journal Page Range
vp.
ISSN
1434-6052
CODEN
EPCFFB

INIS

Country of Publication
Germany
Country of Input or Organization
Germany
INIS RN
54005349
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Descriptors DEI
COSMOLOGY; FRACTALS; GALAXIES; LUMINOSITY; RED SHIFT; RELATIVISTIC RANGE; UNIVERSE
Descriptors DEC
ENERGY RANGE; OPTICAL PROPERTIES; PHYSICAL PROPERTIES

Optional Information

Notes
AID: 896