Artículo de publicación ISIEven today in our Galaxy, stars form from gas cores in a variety of environments, which may affect the properties of the resulting star and planetary systems. Here, we study the role of pressure, parameterized via ambient clump mass surface density, on protostellar evolution and appearance, focusing on low-mass Sun-like stars and considering a range of conditions from relatively low pressure filaments in Taurus, to intermediate pressures of cluster-forming clumps like the Orion Nebula Cluster, to very high pressures that may be found in the densest infrared dark clouds or in the Galactic center. We present unified analytic and numerical models for the collapse of prestellar cores, accretion disks, protostellar evo...
Astronomical observations and modelling suggest that stars assemble out of the gas and dust collecte...
This thesis focuses on protoplanetary disks: flattened structures of gas and dust around young stars...
International audienceImproving our understanding of the earliest stages of star formation is crucia...
Artículo de publicación ISIEven today in our Galaxy, stars form from gas cores in a variety of envir...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
We explore the possible consequences of planet formation on stellar composition. Circumstellar disks...
Understanding the chemical evolution in star-forming cores is a necessary pre-condition to correctly...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
International audienceProtoplanetary disk structures are known to be shaped by various thermal and c...
Context. The evolution of interstellar clouds of gas and dust establishes the prerequisites for star...
Star and planet formation is intimately linked through the protostellar disk. Understanding the form...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
It is clear that outflow activity can have a significant impact on the structure and evolution of ma...
International audienceWe investigate the molecular abundances in protostellar cores by solving the g...
Astronomical observations and modelling suggest that stars assemble out of the gas and dust collecte...
This thesis focuses on protoplanetary disks: flattened structures of gas and dust around young stars...
International audienceImproving our understanding of the earliest stages of star formation is crucia...
Artículo de publicación ISIEven today in our Galaxy, stars form from gas cores in a variety of envir...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
We explore the possible consequences of planet formation on stellar composition. Circumstellar disks...
Understanding the chemical evolution in star-forming cores is a necessary pre-condition to correctly...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
International audienceProtoplanetary disk structures are known to be shaped by various thermal and c...
Context. The evolution of interstellar clouds of gas and dust establishes the prerequisites for star...
Star and planet formation is intimately linked through the protostellar disk. Understanding the form...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
It is clear that outflow activity can have a significant impact on the structure and evolution of ma...
International audienceWe investigate the molecular abundances in protostellar cores by solving the g...
Astronomical observations and modelling suggest that stars assemble out of the gas and dust collecte...
This thesis focuses on protoplanetary disks: flattened structures of gas and dust around young stars...
International audienceImproving our understanding of the earliest stages of star formation is crucia...