Dense gas scaling relations at kiloparsec scales across nearby galaxies with the ALMA ALMOND and IRAM 30m EMPIRE surveys

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Neumann, Lukas, Jimenez-Donaire, Maria J., Leroy, Adam K., Bigiel, Frank, Usero, Antonio, Sun, Jiayi, Schinnerer, Eva, Querejeta, Miguel, Stuber, Sophia K., Beslic, Ivana, Barnes, Ashley, Brok, Jakob den, Cao, Yixian, Eibensteiner, Cosima, He, Hao, Klessen, Ralf S., Liang, Fu-Heng, Liu, Daizhong, Pan, Hsi-An, Williams, Thomas G.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910800811130880
author Neumann, Lukas
Jimenez-Donaire, Maria J.
Leroy, Adam K.
Bigiel, Frank
Usero, Antonio
Sun, Jiayi
Schinnerer, Eva
Querejeta, Miguel
Stuber, Sophia K.
Beslic, Ivana
Barnes, Ashley
Brok, Jakob den
Cao, Yixian
Eibensteiner, Cosima
He, Hao
Klessen, Ralf S.
Liang, Fu-Heng
Liu, Daizhong
Pan, Hsi-An
Williams, Thomas G.
author_facet Neumann, Lukas
Jimenez-Donaire, Maria J.
Leroy, Adam K.
Bigiel, Frank
Usero, Antonio
Sun, Jiayi
Schinnerer, Eva
Querejeta, Miguel
Stuber, Sophia K.
Beslic, Ivana
Barnes, Ashley
Brok, Jakob den
Cao, Yixian
Eibensteiner, Cosima
He, Hao
Klessen, Ralf S.
Liang, Fu-Heng
Liu, Daizhong
Pan, Hsi-An
Williams, Thomas G.
contents Dense, cold gas is the key ingredient for star formation. Over the last two decades, HCN(1-0) emission has been utilised as the most accessible dense gas tracer to study external galaxies. We present new measurements tracing the relationship between dense gas tracers, bulk molecular gas tracers, and star formation in the ALMA ALMOND survey, the largest sample of resolved (1-2 kpc resolution) HCN maps of galaxies in the local universe (d < 25 Mpc). We measure HCN/CO, a line ratio sensitive to the physical density distribution, and SFR/HCN, a proxy for the dense gas star formation efficiency, as a function of molecular gas surface density, stellar mass surface density, and dynamical equilibrium pressure across 31 galaxies, increasing the number of galaxies by a factor of > 3 over the previous largest such study (EMPIRE). HCN/CO increases (slope of ~ 0.5 and scatter of ~ 0.2 dex), while SFR/HCN decreases (slope of ~ -0.6 and scatter of ~ 0.4 dex) with increasing molecular gas surface density, stellar mass surface density and pressure. Galaxy centres with high stellar mass surface density show a factor of a few higher HCN/CO and lower SFR/HCN compared to the disc average, but both environments follow the same average trend. Our results emphasise that molecular gas properties vary systematically with the galactic environment and demonstrate that the scatter in the Gao-Solomon relation (SFR against HCN) is of physical origin.
format Preprint
id arxiv_https___arxiv_org_abs_2412_10506
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dense gas scaling relations at kiloparsec scales across nearby galaxies with the ALMA ALMOND and IRAM 30m EMPIRE surveys
Neumann, Lukas
Jimenez-Donaire, Maria J.
Leroy, Adam K.
Bigiel, Frank
Usero, Antonio
Sun, Jiayi
Schinnerer, Eva
Querejeta, Miguel
Stuber, Sophia K.
Beslic, Ivana
Barnes, Ashley
Brok, Jakob den
Cao, Yixian
Eibensteiner, Cosima
He, Hao
Klessen, Ralf S.
Liang, Fu-Heng
Liu, Daizhong
Pan, Hsi-An
Williams, Thomas G.
Astrophysics of Galaxies
Dense, cold gas is the key ingredient for star formation. Over the last two decades, HCN(1-0) emission has been utilised as the most accessible dense gas tracer to study external galaxies. We present new measurements tracing the relationship between dense gas tracers, bulk molecular gas tracers, and star formation in the ALMA ALMOND survey, the largest sample of resolved (1-2 kpc resolution) HCN maps of galaxies in the local universe (d < 25 Mpc). We measure HCN/CO, a line ratio sensitive to the physical density distribution, and SFR/HCN, a proxy for the dense gas star formation efficiency, as a function of molecular gas surface density, stellar mass surface density, and dynamical equilibrium pressure across 31 galaxies, increasing the number of galaxies by a factor of > 3 over the previous largest such study (EMPIRE). HCN/CO increases (slope of ~ 0.5 and scatter of ~ 0.2 dex), while SFR/HCN decreases (slope of ~ -0.6 and scatter of ~ 0.4 dex) with increasing molecular gas surface density, stellar mass surface density and pressure. Galaxy centres with high stellar mass surface density show a factor of a few higher HCN/CO and lower SFR/HCN compared to the disc average, but both environments follow the same average trend. Our results emphasise that molecular gas properties vary systematically with the galactic environment and demonstrate that the scatter in the Gao-Solomon relation (SFR against HCN) is of physical origin.
title Dense gas scaling relations at kiloparsec scales across nearby galaxies with the ALMA ALMOND and IRAM 30m EMPIRE surveys
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2412.10506