Bursty star formation and galaxy-galaxy interactions in low-mass galaxies 1 Gyr after the Big Bang

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Main Authors: Asada, Yoshihisa, Sawicki, Marcin, Abraham, Roberto, Bradač, Maruša, Brammer, Gabriel, Desprez, Guillaume, Estrada-Carpenter, Vince, Iyer, Kartheik, Martis, Nicholas, Matharu, Jasleen, Mowla, Lamiya, Muzzin, Adam, Noirot, Gaël, Sarrouh, Ghassan T. E., Strait, Victoria, Willott, Chris J., Harshan, Anishya
Format: Preprint
Published: 2023
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author Asada, Yoshihisa
Sawicki, Marcin
Abraham, Roberto
Bradač, Maruša
Brammer, Gabriel
Desprez, Guillaume
Estrada-Carpenter, Vince
Iyer, Kartheik
Martis, Nicholas
Matharu, Jasleen
Mowla, Lamiya
Muzzin, Adam
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Willott, Chris J.
Harshan, Anishya
author_facet Asada, Yoshihisa
Sawicki, Marcin
Abraham, Roberto
Bradač, Maruša
Brammer, Gabriel
Desprez, Guillaume
Estrada-Carpenter, Vince
Iyer, Kartheik
Martis, Nicholas
Matharu, Jasleen
Mowla, Lamiya
Muzzin, Adam
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Willott, Chris J.
Harshan, Anishya
contents We use CANUCS JWST/NIRCam imaging of galaxies behind the gravitationally-lensing cluster MACS J0417.5-1154 to investigate star formation burstiness in low-mass ($M_\star\sim10^8\ M_\odot$) galaxies at $z\sim4.7-6.5$. Our sample of 123 galaxies is selected using the Lyman break selection and photometric emission-line excess methods. Sixty per cent of the 123 galaxies in this sample have H$α$-to-UV flux ratios that deviate significantly from the range of $η_{1500}$ values consistent with smooth and steady star formation histories. This large fraction indicates that the majority of low-mass galaxies is experiencing bursty star formation histories at high redshift. We also searched for interacting galaxies in our sample and found that they are remarkably common ($\sim40$ per cent of the sample). Compared to non-interacting galaxies, interacting galaxies are more likely to have very low H$α$-to-UV ratios, suggesting that galaxy-galaxy interactions enhance star formation burstiness and enable faster quenching (with timescales of $\lesssim100$ Myr) that follows the rapid rise of star formation activity. Given the high frequency of galaxy-galaxy interactions and the rapid SFR fluctuations they appear to cause, we conclude that galaxy-galaxy interactions could be a leading cause of bursty star formation in low-mass, high-$z$ galaxies. They could thus play a significant role in the evolution of the galaxy population at early cosmological times.
format Preprint
id arxiv_https___arxiv_org_abs_2310_02314
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Bursty star formation and galaxy-galaxy interactions in low-mass galaxies 1 Gyr after the Big Bang
Asada, Yoshihisa
Sawicki, Marcin
Abraham, Roberto
Bradač, Maruša
Brammer, Gabriel
Desprez, Guillaume
Estrada-Carpenter, Vince
Iyer, Kartheik
Martis, Nicholas
Matharu, Jasleen
Mowla, Lamiya
Muzzin, Adam
Noirot, Gaël
Sarrouh, Ghassan T. E.
Strait, Victoria
Willott, Chris J.
Harshan, Anishya
Astrophysics of Galaxies
We use CANUCS JWST/NIRCam imaging of galaxies behind the gravitationally-lensing cluster MACS J0417.5-1154 to investigate star formation burstiness in low-mass ($M_\star\sim10^8\ M_\odot$) galaxies at $z\sim4.7-6.5$. Our sample of 123 galaxies is selected using the Lyman break selection and photometric emission-line excess methods. Sixty per cent of the 123 galaxies in this sample have H$α$-to-UV flux ratios that deviate significantly from the range of $η_{1500}$ values consistent with smooth and steady star formation histories. This large fraction indicates that the majority of low-mass galaxies is experiencing bursty star formation histories at high redshift. We also searched for interacting galaxies in our sample and found that they are remarkably common ($\sim40$ per cent of the sample). Compared to non-interacting galaxies, interacting galaxies are more likely to have very low H$α$-to-UV ratios, suggesting that galaxy-galaxy interactions enhance star formation burstiness and enable faster quenching (with timescales of $\lesssim100$ Myr) that follows the rapid rise of star formation activity. Given the high frequency of galaxy-galaxy interactions and the rapid SFR fluctuations they appear to cause, we conclude that galaxy-galaxy interactions could be a leading cause of bursty star formation in low-mass, high-$z$ galaxies. They could thus play a significant role in the evolution of the galaxy population at early cosmological times.
title Bursty star formation and galaxy-galaxy interactions in low-mass galaxies 1 Gyr after the Big Bang
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2310.02314