Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often found to be similar to the form of the stellar initial mass function (IMF). This suggests that the form of the IMF is the result of the form of the CMF. However, most stars are thought to form in binary and multiple systems, therefore the relationship between the IMF and the CMF cannot be trivial. We test two star formation scenarios – one in which all stars form as binary or triple systems, and one in which low-mass stars form in a predominantly single mode. We show that from a log-normal CMF, similar to those observed, and expected on theoretical grounds, the model in which all stars form as multiples gives a better fit to the IMF
The origin of the stellar initial mass function (IMF) is a fundamental issue in the theory of star f...
We review recent advances in our understanding of the origin of the initial mass function (IMF). We ...
Understanding the processes that determine the stellar Initial Mass Function (IMF) is a critical uns...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often foun...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often found...
rs form from dense molecular cores, and the mass function of these cores (the CMF) is often found to...
International audienceWe present a simple statistical analysis of recent numerical simulations explo...
We show that the same initial mass function (IMF) can result from very different modes of star form...
Observations have indicated that the pre-stellar core mass function (CMF) is similar to the stellar ...
Observations indicate that the central portions of the present-day prestellar core mass function (he...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass func...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass fu...
Detailed knowledge of the initial distribution of stellar masses at birth (known as the initial mass...
The distribution of stellar masses that form in one star formation event in a given volume of space ...
We review recent advances in our understanding of the origin of the initial mass function (IMF). We ...
The origin of the stellar initial mass function (IMF) is a fundamental issue in the theory of star f...
We review recent advances in our understanding of the origin of the initial mass function (IMF). We ...
Understanding the processes that determine the stellar Initial Mass Function (IMF) is a critical uns...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often foun...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often found...
rs form from dense molecular cores, and the mass function of these cores (the CMF) is often found to...
International audienceWe present a simple statistical analysis of recent numerical simulations explo...
We show that the same initial mass function (IMF) can result from very different modes of star form...
Observations have indicated that the pre-stellar core mass function (CMF) is similar to the stellar ...
Observations indicate that the central portions of the present-day prestellar core mass function (he...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass func...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass fu...
Detailed knowledge of the initial distribution of stellar masses at birth (known as the initial mass...
The distribution of stellar masses that form in one star formation event in a given volume of space ...
We review recent advances in our understanding of the origin of the initial mass function (IMF). We ...
The origin of the stellar initial mass function (IMF) is a fundamental issue in the theory of star f...
We review recent advances in our understanding of the origin of the initial mass function (IMF). We ...
Understanding the processes that determine the stellar Initial Mass Function (IMF) is a critical uns...