Not So Isolated: Green Pea Galaxies in Overdense Environments revealed by VLT/MUSE
A. Arroyo-Polonio, J.M. V\'ilchez, J. Iglesias-P\'aramo, C. Kehrig, E. P\'erez-Montero, R. Amor\'in, B. P\'erez-D\'iaz, M. Hayes, I. Breda, J. S\'anchez Almeida, A. Gim\'enez Alcazar, M. Gonz\'alez-Otero

TL;DR
This study uses VLT/MUSE data to show that Green Pea galaxies are in overdense environments and likely experience starbursts driven by gas accretion rather than recent major mergers.
Contribution
It provides observational evidence that GPs are in overdense regions with no ongoing close mergers, supporting gas accretion as a starburst trigger.
Findings
High companion fraction (~33%) among GPs in overdense environments.
GPs are young, metal-poor, high-sSFR starbursts with elevated velocity dispersions.
Group dynamical masses are much higher than stellar masses, indicating significant dark matter and gas presence.
Abstract
Context. Green Pea galaxies (GPs) are local starburst galaxies serving as analogues for high-redshift star-forming galaxies, particularly Lyman continuum leakers. It remains debated whether their starbursts are driven by internal secular processes or external triggers. Aims. We aim to constrain the role of environment in this triggering, testing whether external influence comes from close interactions or diffuse processes like gas accretion. Methods. We analyse VLT/MUSE observations of 24 GPs at to identify companions via spectral line features. We derive key physical properties (extinction, SFR, stellar mass, age, metallicity) for GPs and companions, and estimate group dynamical masses. Results. We identify 22 emission-line galaxies, 11 being companions ( km s). We find a high companion fraction (%) and a 1 dex number…
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