We propose a new model for the evolution of a star cluster’s system mass function (SMF). The model involves both turbulent fragmentation and competitive accretion. Turbulent fragmentation creates low-mass seed proto-systems (i.e. single and multiple protostars). Some of these low-mass seed proto-systems then grow by competitive accretion to produce the high-mass power-law tail of the SMF. Turbulent fragmentation is relatively inefficient, in the sense that the creation of low-mass seed proto-systems only consumes a fraction, ∼23 per cent (at most ∼50 per cent), of the mass available for star formation. The remaining mass is consumed by competitive accretion. Provided the accretion rate on to a proto-system is approximately proportional to ...
A popular theory of star formation is gravito-turbulent fragmentation, in which self-gravitating st...
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....
It has been shown that fragmentation within self-gravitating, turbulent molecular clouds (‘turbulent...
We explore how the expulsion of gas from star cluster forming cloud cores due to supernova explosion...
We undertake a systematic analysis of the early (< 0.5 Myr) evolution of clustering and the stell...
We undertake a systematic analysis of the early (< 0.5 Myr) evolution of clustering and the stell...
TM acknowledges funding via the ANR 2010 JCJC 0501 1 ‘DESC’ (Dynamical Evolution of Stellar Clusters...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
We explore how the expulsion of gas from star cluster forming cloud cores due to supernova explosion...
A popular theory of star formation is gravito-turbulent fragmentation, in which self-gravitating str...
A popular theory of star formation is gravito-turbulent fragmentation, in which self-gravitating st...
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....
It has been shown that fragmentation within self-gravitating, turbulent molecular clouds (‘turbulent...
We explore how the expulsion of gas from star cluster forming cloud cores due to supernova explosion...
We undertake a systematic analysis of the early (< 0.5 Myr) evolution of clustering and the stell...
We undertake a systematic analysis of the early (< 0.5 Myr) evolution of clustering and the stell...
TM acknowledges funding via the ANR 2010 JCJC 0501 1 ‘DESC’ (Dynamical Evolution of Stellar Clusters...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
We explore how the expulsion of gas from star cluster forming cloud cores due to supernova explosion...
A popular theory of star formation is gravito-turbulent fragmentation, in which self-gravitating str...
A popular theory of star formation is gravito-turbulent fragmentation, in which self-gravitating st...
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....
Disc fragmentation provides an important mechanism for producing low-mass stars in prestellar cores....