We have coupled a chemical model with two dynamical models of collapsing low mass star-forming cores to predict abundances across the core of the commonly used infall tracers, CS and HCO+, at various stages of the collapse. The models investigated are a new ambipolar diffusion model and the ‘inside-out ’ collapse model. We have then used these results as an input to a radiative transfer model to predict the line profiles of several transitions of these molecules. For the inside-out collapse model, we predict significant molecular depletion due to freeze-out in the core centre, which prevents the formation of the blue asymmetry (believed to be the ‘signature ’ of infall) in the line profiles. Molecular depletion also occurs in the ambipolar ...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
Three bright molecular line sources in G333 have recently been shown to exhibit signatures of infall...
The evolution of star-forming core analogues undergoing inside-out collapse is studied with a multip...
Understanding the chemical evolution in star-forming cores is a necessary pre-condition to correctly...
Accepted for publication in MNRASInternational audienceThe complexity of physico-chemical models of ...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
We investigate differences in the molecular abundances between magnetically super- and subcritical p...
textIn this thesis, I focus on the physical and chemical evolution at the earliest stages of low-mas...
Stars form within dense, cold, and compact regions of gas and dust known as prestellar cores. When t...
Context: Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
Recent observations suggest that the behavior of tracer species such as N2H+ and CS is significantly...
Context. Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
R.J.S, R.S, and R.S.K. acknowledge support from the DFG via the SPP 1573 Physics of the ISM (grants ...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
Three bright molecular line sources in G333 have recently been shown to exhibit signatures of infall...
The evolution of star-forming core analogues undergoing inside-out collapse is studied with a multip...
Understanding the chemical evolution in star-forming cores is a necessary pre-condition to correctly...
Accepted for publication in MNRASInternational audienceThe complexity of physico-chemical models of ...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
We investigate differences in the molecular abundances between magnetically super- and subcritical p...
textIn this thesis, I focus on the physical and chemical evolution at the earliest stages of low-mas...
Stars form within dense, cold, and compact regions of gas and dust known as prestellar cores. When t...
Context: Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
Recent observations suggest that the behavior of tracer species such as N2H+ and CS is significantly...
Context. Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
R.J.S, R.S, and R.S.K. acknowledge support from the DFG via the SPP 1573 Physics of the ISM (grants ...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
Context. Numerical simulations of star formation are becoming ever more sophisticated, incorporating...
Three bright molecular line sources in G333 have recently been shown to exhibit signatures of infall...