We reexamine both numerically and analytically the collapse of the singular isothermal sphere in the context of low-mass star formation. We consider the case where the onset of collapse is initiated by some arbitrary process which is accompanied by a central output of either heat or kinetic energy. We find two classes of numerical solutions describing this manner of collapse. The first approaches in time the expansion wave solution of Shu, while the second class is characterized by an ever-decreasing central accretion rate and the presence of an outwardly propagating weak shock. The collapse solution which represents the dividing case between these two classes is determined analytically by a similarity analysis. This solution shares with th...
International audienceContext. Star formation begins with the gravitational collapse of a d...
The Hierarchical Gravitational Fragmentation scenario is investigated through numerical simulations ...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
We reexamine both numerically and analytically the collapse of the singular isothermal sphere in the...
We present semi-analytical similarity solutions for the inside-out, expansion-wave collapse of initi...
We caution against approximating the initial conditions for protostellar collapse with a singular is...
We present numerical simulations of the evolution of low-mass, isothermal, molecular cores which are...
A thesis submitted in fulfilment of the requirements for the degree of Doctor of Philosophy in the ...
Context. Star formation begins with the gravitational collapse of a dense core inside a mo...
Isotopic anomalies in presolar grains and other meteoritical components require nucleosynthesis in s...
Recent observations suggest that mass ejection and mass accretion both decline significantly with ti...
Self-similar solutions provide good descriptions for the gravitational collapse of spherical clouds ...
International audienceAims. Understanding the formation of binary and multiple stellar systems large...
Numerous cosmological hydrodynamic studies have addressed the formation of galaxies. Here we choose ...
We compute numerical simulations of spherical collapse triggered by a slow increase in external pres...
International audienceContext. Star formation begins with the gravitational collapse of a d...
The Hierarchical Gravitational Fragmentation scenario is investigated through numerical simulations ...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
We reexamine both numerically and analytically the collapse of the singular isothermal sphere in the...
We present semi-analytical similarity solutions for the inside-out, expansion-wave collapse of initi...
We caution against approximating the initial conditions for protostellar collapse with a singular is...
We present numerical simulations of the evolution of low-mass, isothermal, molecular cores which are...
A thesis submitted in fulfilment of the requirements for the degree of Doctor of Philosophy in the ...
Context. Star formation begins with the gravitational collapse of a dense core inside a mo...
Isotopic anomalies in presolar grains and other meteoritical components require nucleosynthesis in s...
Recent observations suggest that mass ejection and mass accretion both decline significantly with ti...
Self-similar solutions provide good descriptions for the gravitational collapse of spherical clouds ...
International audienceAims. Understanding the formation of binary and multiple stellar systems large...
Numerous cosmological hydrodynamic studies have addressed the formation of galaxies. Here we choose ...
We compute numerical simulations of spherical collapse triggered by a slow increase in external pres...
International audienceContext. Star formation begins with the gravitational collapse of a d...
The Hierarchical Gravitational Fragmentation scenario is investigated through numerical simulations ...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...