Observations indicate that the central portions of the present-day prestellar core mass function (hereafter CMF) and the stellar initial mass function (hereafter IMF) both have approximately log-normal shapes, but that the CMF is displaced to higher mass than the IMF by a factor F ∼ 4 ± 1. This has led to suggestions that the shape of the IMF is directly inherited from the shape of the CMF – and therefore, by implication, that there is a self-similar mapping from the CMF on to the IMF. If we assume a self-similar mapping, it follows (i) that F=NO/η, where η is the mean fraction of a core’s mass that ends up in stars and NO is the mean number of stars spawned by a single core; and (ii) that the stars spawned by a single core must have an app...
Context. The origin of the stellar initial mass function (IMF) and its relation with the core mass f...
It is usually assumed that the stellar initial mass function (IMF) takes a universal form and that t...
International audienceAims. The processes that determine the stellar initial mass function (IMF) and...
Observations indicate that the central portions of the present-day prestellar core mass function (he...
Observations indicate that the central portions of the present-day prestellar core mass function (h...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often foun...
rs form from dense molecular cores, and the mass function of these cores (the CMF) is often found to...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often found...
Observations have indicated that the pre-stellar core mass function (CMF) is similar to the stellar ...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass fu...
We show that the same initial mass function (IMF) can result from very different modes of star form...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass func...
International audienceWe present a simple statistical analysis of recent numerical simulations explo...
Context. The origin of the stellar initial mass function (IMF) and its relation with the core mass f...
It is usually assumed that the stellar initial mass function (IMF) takes a universal form and that t...
International audienceAims. The processes that determine the stellar initial mass function (IMF) and...
Observations indicate that the central portions of the present-day prestellar core mass function (he...
Observations indicate that the central portions of the present-day prestellar core mass function (h...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often foun...
rs form from dense molecular cores, and the mass function of these cores (the CMF) is often found to...
Stars form from dense molecular cores, and the mass function of these cores (the CMF) is often found...
Observations have indicated that the pre-stellar core mass function (CMF) is similar to the stellar ...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass fu...
We show that the same initial mass function (IMF) can result from very different modes of star form...
We examine the initial mass functions (IMFs) of stars produced by different molecular core mass func...
International audienceWe present a simple statistical analysis of recent numerical simulations explo...
Context. The origin of the stellar initial mass function (IMF) and its relation with the core mass f...
It is usually assumed that the stellar initial mass function (IMF) takes a universal form and that t...
International audienceAims. The processes that determine the stellar initial mass function (IMF) and...