The Timescales of Star Cluster Emergence: The Case of NGC 4449
arXiv:2404.09112 · doi:10.3847/1538-4357/ad3e64
Abstract
We survey the young star cluster population in the dwarf galaxy NGC4449 with the goal of investigating how stellar feedback may depend on the clusters' properties. Using Ultraviolet(UV)-optical-NearIR(NIR) photometry obtained from the Hubble Space Telescope, we have recovered 99 compact sources exhibiting emission in the Pa hydrogen recombination line. Our analysis reveals these sources possess masses , ages 1-20 Myr, and color excess E(B - V) in the range 0-1.4. After selecting clusters with mass above 3,000M to mitigate stochastic sampling of the stellar initial mass function, we find that our IR-selected clusters have a median mass of 7 and remain embedded in their surrounding gas and dust for 5-6 Myr. In contrast, line-emitting sources selected from existing UV/optically catalogs have a median mass of 3.5 and have cleared their surroundings by 4 Myr. We further find that the environment in NGC4449 is too low pressure to drive these differences. We interpret these findings as evidence that the clearing timescale from pre-supernova and supernova feedback is cluster mass-dependent. Even in clusters with mass7,000~M, stochastic sampling of the upper end of the stellar initial mass function is present, randomly decreasing the number of massive stars available to inject energy and momentum into the surrounding medium. This effect may increase the clearing timescales in these clusters by decreasing the effectiveness of both pre-supernova and supernova feedback; neither models nor observations have so far explored such dependence explicitly. Future studies and observations with, e.g., the JWST, will fill this gap.
References in corpus (30)
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- Stellar Population Inference with Prospector
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- The role of stellar feedback in the formation of galaxies
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- Legacy ExtraGalactic UV Survey (LEGUS) with The Hubble Space Telescope. I. Survey Description
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- Studying the YMC population of M83: how long clusters remain embedded, their interaction with the ISM and implications for GC formation theories
- Using H-alpha Morphology and Surface Brightness Fluctuations to Age-Date Star Clusters in M83
- Metallicity-dependent wind parameter predictions for OB stars
- On the duration of the embedded phase of star formation
- The Spatial Relation between Young Star Clusters and Molecular Clouds in M 51 with LEGUS
- Radii of Young Star Clusters in Nearby Galaxies
- Spitzer Local Volume Legacy (LVL) SEDs and Physical Properties
- The Young Star Cluster population of M51 with LEGUS: I. A comprehensive study of cluster formation and evolution
- H Morphologies of Star Clusters: A LEGUS study of HII region evolution timescales and stochasticity in low mass clusters
- Emerging Massive Star Clusters Revealed: High Resolution Imaging of NGC 4449 from the Radio to the Ultraviolet
- Sizes and Shapes of Young Star Cluster Light Profiles in M83
- Star Cluster Catalogs for the LEGUS Dwarf Galaxies
- The Interstellar Medium and star formation on kpc size scales
- Supernova feedback and the energy deposition in molecular clouds
- The impact of pre-supernova feedback and its dependence on environment
- LEGUS and Halpha-LEGUS Observations of Star Clusters in NGC 4449: Improved Ages and the Fraction of Light in Clusters as a Function of Age
- H Morphologies of Star Clusters in 16 LEGUS Galaxies: Constraints on HII region evolution timescales
- Stellar feedback in M83 as observed with MUSE -- II. Analysis of the HII region population: ionisation budget and pre-SN feedback
- Looking for obscured young star clusters in NCG 1313
- Low Mass Stars as Tracers of Star and Cluster Formation
- Exploring the impact of IMF and binary parameter stochasticity with a binary population synthesis code
- Spatially Resolved Dust, Gas, and Star Formation in the Dwarf Magellanic Irregular NGC4449
- Dust Buried Compact Sources in the Dwarf Galaxy NGC 4449