Using Cumulative Number Densities to Compare Galaxies across Cosmic Time

Fuente: arXiv
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Main Authors: Behroozi, Peter, Marchesini, Danilo, Wechsler, Risa, Muzzin, Adam, Papovich, Casey, Stefanon, Mauro
Format: Preprint
Published: 2013
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author Behroozi, Peter
Marchesini, Danilo
Wechsler, Risa
Muzzin, Adam
Papovich, Casey
Stefanon, Mauro
author_facet Behroozi, Peter
Marchesini, Danilo
Wechsler, Risa
Muzzin, Adam
Papovich, Casey
Stefanon, Mauro
contents Comparing galaxies across redshifts at fixed cumulative number density is a popular way to estimate the evolution of specific galaxy populations. This method ignores scatter in mass accretion histories and galaxy-galaxy mergers, which can lead to errors when comparing galaxies over large redshift ranges (Delta z > 1). We use abundance matching in the LCDM paradigm to estimate the median change in number density with redshift and provide a simple fit (+0.16 dex per unit Delta z) for progenitors of z = 0 galaxies. We find that galaxy descendants do not evolve in the same way as galaxy progenitors, largely due to scatter in mass accretion histories. We also provide estimates for the 1-sigma range of number densities corresponding to galaxy progenitors and descendants. Finally, we discuss some limits on number density comparisons, which arise due to difficulties measuring physical quantities (e.g., stellar mass) consistently across redshifts. A public tool to calculate number density evolution for galaxies, as well as approximate halo masses, is available online.
format Preprint
id arxiv_https___arxiv_org_abs_1308_3232
institution arXiv
publishDate 2013
record_format arxiv
spellingShingle Using Cumulative Number Densities to Compare Galaxies across Cosmic Time
Behroozi, Peter
Marchesini, Danilo
Wechsler, Risa
Muzzin, Adam
Papovich, Casey
Stefanon, Mauro
Cosmology and Nongalactic Astrophysics
Comparing galaxies across redshifts at fixed cumulative number density is a popular way to estimate the evolution of specific galaxy populations. This method ignores scatter in mass accretion histories and galaxy-galaxy mergers, which can lead to errors when comparing galaxies over large redshift ranges (Delta z > 1). We use abundance matching in the LCDM paradigm to estimate the median change in number density with redshift and provide a simple fit (+0.16 dex per unit Delta z) for progenitors of z = 0 galaxies. We find that galaxy descendants do not evolve in the same way as galaxy progenitors, largely due to scatter in mass accretion histories. We also provide estimates for the 1-sigma range of number densities corresponding to galaxy progenitors and descendants. Finally, we discuss some limits on number density comparisons, which arise due to difficulties measuring physical quantities (e.g., stellar mass) consistently across redshifts. A public tool to calculate number density evolution for galaxies, as well as approximate halo masses, is available online.
title Using Cumulative Number Densities to Compare Galaxies across Cosmic Time
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/1308.3232