We present results from multifrequency radiative hydrodynamical chemistry simulations addressing primordial star formation and related stellar feedback from various populations of stars, stellar spectral energy distributions (SEDs) and initial mass functions. Spectra for massive stars, intermediate-mass stars and regular solar-like stars are adopted over a grid of 150 frequency bins and consistently coupled with hydrodynamics, heavy-element pollution and non-equilibrium species calculations. Powerful massive Population III stars are found to be able to largely ionize H and, subsequently, He and He+, causing an inversion of the equation of state and a boost of the Jeans masses in the early intergalactic medium. Radiative effects on star form...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
We present a suite of high-resolution radiation hydrodynamic simulations of a small patch (1 kpc2) o...
Cosmic structure originated from minute density perturbations in an almost homogeneous universe. The...
We investigate how radiative feedback from the first stars affects the assembly of the first dwarf g...
We investigate how radiative feedback from the first stars affects the assembly of the first dwarf g...
Context. The first generation of stars, which formed directly from the primordial gas, is believed t...
We investigate the impact of an ionising X-ray background on metal-free Population III stars within ...
Recent work suggests that the first generation of stars, the so-called Population III (Pop III), cou...
Molecular formation and destruction processes are explored in rapidly evolving, non-equilibrium astr...
Radiative feedback (RFB) from stars plays a key role in galaxies, but remains poorly understood. We ...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
Radiative feedback (RFB) from stars plays a key role in galaxies, but remains poorly understood. We ...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
We present a suite of high-resolution radiation hydrodynamic simulations of a small patch (1 kpc2) o...
Cosmic structure originated from minute density perturbations in an almost homogeneous universe. The...
We investigate how radiative feedback from the first stars affects the assembly of the first dwarf g...
We investigate how radiative feedback from the first stars affects the assembly of the first dwarf g...
Context. The first generation of stars, which formed directly from the primordial gas, is believed t...
We investigate the impact of an ionising X-ray background on metal-free Population III stars within ...
Recent work suggests that the first generation of stars, the so-called Population III (Pop III), cou...
Molecular formation and destruction processes are explored in rapidly evolving, non-equilibrium astr...
Radiative feedback (RFB) from stars plays a key role in galaxies, but remains poorly understood. We ...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
Radiative feedback (RFB) from stars plays a key role in galaxies, but remains poorly understood. We ...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
We present a suite of high-resolution radiation hydrodynamic simulations of a small patch (1 kpc2) o...