A physically motivated framework to compare pair fractions of isolated low and high mass galaxies across cosmic time

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Main Authors: Chamberlain, Katie, Besla, Gurtina, Patel, Ekta, Rodriguez-Gomez, Vicente, Torrey, Paul, Martin, Garreth, Johnson, Kelsey, Kallivayalil, Nitya, Patton, David, Pearson, Sarah, Privon, George, Stierwalt, Sabrina
Format: Preprint
Published: 2023
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author Chamberlain, Katie
Besla, Gurtina
Patel, Ekta
Rodriguez-Gomez, Vicente
Torrey, Paul
Martin, Garreth
Johnson, Kelsey
Kallivayalil, Nitya
Patton, David
Pearson, Sarah
Privon, George
Stierwalt, Sabrina
author_facet Chamberlain, Katie
Besla, Gurtina
Patel, Ekta
Rodriguez-Gomez, Vicente
Torrey, Paul
Martin, Garreth
Johnson, Kelsey
Kallivayalil, Nitya
Patton, David
Pearson, Sarah
Privon, George
Stierwalt, Sabrina
contents Low mass galaxy pair fractions are understudied, and it is unclear whether low mass pair fractions evolve in the same way as more massive systems over cosmic time. In the era of JWST, Roman, and Rubin, selecting galaxy pairs in a self-consistent way will be critical to connect observed pair fractions to cosmological merger rates across all mass scales and redshifts. Utilizing the Illustris TNG100 simulation, we create a sample of physically associated low mass ($\rm 10^8<M_*<5\times10^9\,M_\odot$) and high mass ($\rm 5\times10^9<M_*<10^{11}\,M_\odot$) pairs between $z=0$ and $4.2$. The low mass pair fraction increases from $z=0$ to $2.5$, while the high mass pair fraction peaks at $z=0$ and is constant or slightly decreasing at $z>1$. At $z=0$, the low mass major (1:4 mass ratio) pair fraction is 4$\times$ lower than high mass pairs, consistent with findings for cosmological merger rates. We show that separation limits that vary with the mass and redshift of the system, such as scaling by the virial radius of the host halo ($r_{\mathrm{sep}}< 1 R_{\rm vir}$), are critical for recovering pair fraction differences between low mass and high mass systems. Alternatively, static physical separation limits applied equivalently to all galaxy pairs do not recover the differences between low and high mass pair fractions, even up to separations of $300$ kpc. Finally, we place isolated mass-analogs of Local Group galaxy pairs, i.e., Milky Way (MW)--M31, MW--LMC, LMC--SMC, in a cosmological context, showing that isolated analogs of LMC--SMC-mass pairs and low-separation ($<50$ kpc) MW--LMC-mass pairs are $2-3\times$ more common at $z\gtrsim2-3$.
format Preprint
id arxiv_https___arxiv_org_abs_2309_13228
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A physically motivated framework to compare pair fractions of isolated low and high mass galaxies across cosmic time
Chamberlain, Katie
Besla, Gurtina
Patel, Ekta
Rodriguez-Gomez, Vicente
Torrey, Paul
Martin, Garreth
Johnson, Kelsey
Kallivayalil, Nitya
Patton, David
Pearson, Sarah
Privon, George
Stierwalt, Sabrina
Astrophysics of Galaxies
Low mass galaxy pair fractions are understudied, and it is unclear whether low mass pair fractions evolve in the same way as more massive systems over cosmic time. In the era of JWST, Roman, and Rubin, selecting galaxy pairs in a self-consistent way will be critical to connect observed pair fractions to cosmological merger rates across all mass scales and redshifts. Utilizing the Illustris TNG100 simulation, we create a sample of physically associated low mass ($\rm 10^8<M_*<5\times10^9\,M_\odot$) and high mass ($\rm 5\times10^9<M_*<10^{11}\,M_\odot$) pairs between $z=0$ and $4.2$. The low mass pair fraction increases from $z=0$ to $2.5$, while the high mass pair fraction peaks at $z=0$ and is constant or slightly decreasing at $z>1$. At $z=0$, the low mass major (1:4 mass ratio) pair fraction is 4$\times$ lower than high mass pairs, consistent with findings for cosmological merger rates. We show that separation limits that vary with the mass and redshift of the system, such as scaling by the virial radius of the host halo ($r_{\mathrm{sep}}< 1 R_{\rm vir}$), are critical for recovering pair fraction differences between low mass and high mass systems. Alternatively, static physical separation limits applied equivalently to all galaxy pairs do not recover the differences between low and high mass pair fractions, even up to separations of $300$ kpc. Finally, we place isolated mass-analogs of Local Group galaxy pairs, i.e., Milky Way (MW)--M31, MW--LMC, LMC--SMC, in a cosmological context, showing that isolated analogs of LMC--SMC-mass pairs and low-separation ($<50$ kpc) MW--LMC-mass pairs are $2-3\times$ more common at $z\gtrsim2-3$.
title A physically motivated framework to compare pair fractions of isolated low and high mass galaxies across cosmic time
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2309.13228