We present a study correlating the spatial locations of young star clusters with those of molecular clouds in NGC 5194, in order to investigate the time-scale over which clusters separate from their birth clouds. The star cluster catalogues are from the Legacy ExtraGalactic UV Survey (LEGUS) and the molecular clouds from the Plateau de Bure Interefrometer Arcsecond Whirpool Survey (PAWS). We find that younger star clusters are spatially closer to molecular clouds than older star clusters. The median age for clusters associated with clouds is 4 Myr, whereas it is 50 Myr for clusters that are sufficiently separated from a molecular cloud to be considered unassociated. After ∼6 Myr, the majority of the star clusters lose association with their...
This is the final version. Available from OUP via the DOI in this recordRecently acquired WFC3 UV (F...
We present a study of the hierarchical clustering of the young stellar clusters in six local (3–15 M...
In the hierarchical view of star formation, giant molecular gas clouds (GMCs) undergo fragmentation ...
We present a study correlating the spatial locations of young star clusters with those of molecular ...
This is the final version. Available from OUP via the DOI in this recordWe present a study correlati...
We present a study correlating the spatial locations of young star clusters with those of molecular...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
It has recently been established that the properties of young star clusters (YSCs) can vary as a fun...
We present an investigation of the relationship between giant molecular cloud (GMC) properties and t...
Aims. We study the association between giant molecular clouds (GMCs) and young stellar cluster candi...
Aims. We study the association between giant molecular clouds (GMCs) and young stellar cluster candi...
We present an investigation of the relationship between giant molecular cloud (GMC) properties and t...
This is the final version. Available from OUP via the DOI in this recordRecently acquired WFC3 UV (F...
We present a study of the hierarchical clustering of the young stellar clusters in six local (3–15 M...
In the hierarchical view of star formation, giant molecular gas clouds (GMCs) undergo fragmentation ...
We present a study correlating the spatial locations of young star clusters with those of molecular ...
This is the final version. Available from OUP via the DOI in this recordWe present a study correlati...
We present a study correlating the spatial locations of young star clusters with those of molecular...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
International audienceWe present a study correlating the spatial locations of young star clusters wi...
It has recently been established that the properties of young star clusters (YSCs) can vary as a fun...
We present an investigation of the relationship between giant molecular cloud (GMC) properties and t...
Aims. We study the association between giant molecular clouds (GMCs) and young stellar cluster candi...
Aims. We study the association between giant molecular clouds (GMCs) and young stellar cluster candi...
We present an investigation of the relationship between giant molecular cloud (GMC) properties and t...
This is the final version. Available from OUP via the DOI in this recordRecently acquired WFC3 UV (F...
We present a study of the hierarchical clustering of the young stellar clusters in six local (3–15 M...
In the hierarchical view of star formation, giant molecular gas clouds (GMCs) undergo fragmentation ...