We introduce the thesan project, a suite of large volume (Lbox=95.5cMpc) radiation-magnetohydrodynamic simulations that simultaneously model the large-scale statistical properties of the intergalactic medium during reionization and the resolved characteristics of the galaxies responsible for it. The flagship simulation has dark matter and baryonic mass resolutions of 3.1×106M⊙ and 5.8×105M⊙, respectively. The gravitational forces are softened on scales of 2.2 ckpc with the smallest cell sizes reaching 10 pc at z = 5.5, enabling predictions down to the atomic cooling limit. The simulations use an efficient radiation hydrodynamics solver (arepo-rt) that precisely captures the interaction between ionizing photons and gas, coupled to well-te...
We examine the epoch of hydrogen reionization using a new numerical method that allows us to self-co...
International audienceWe present the SPHINX suite of cosmological adaptive mesh refinement simulatio...
We use the SPHINX suite of high-resolution cosmological radiation hydrodynamics simulations to study...
ABSTRACT We introduce the thesan project, a suite of large volume ($L_\mathrm{box} =...
The high-redshift intergalactic medium (IGM) and the primeval galaxy population are rapidly becoming...
A fundamental requirement for reionizing the Universe is that a sufficient fraction of the ionizing ...
The visibility of high-redshift Lyman-alpha emitting galaxies (LAEs) provides important constraints ...
ABSTRACT The visibility of high-redshift Lyman-alpha emitting galaxies (LAEs) provid...
Philosophiae Doctor - PhD (Physics)We improve on the physical treatment of ionising source and sink ...
ABSTRACT Using high-resolution cosmological radiation-hydrodynamic (RHD) simulations ...
Line intensity mapping (LIM) is rapidly emerging as a powerful technique to study galaxy formation a...
We introduce a new suite of radiation- hydrodynamical simulations of galaxy formation and reionizati...
International audienceWe use the photon flux and absorption tracer algorithm presented in Katz et al...
We use a fully self-consistent cosmological simulation including dark matter dynamics, multi-species...
We present a new hybrid code for large volume, high resolution simulations of cosmic reionization, w...
We examine the epoch of hydrogen reionization using a new numerical method that allows us to self-co...
International audienceWe present the SPHINX suite of cosmological adaptive mesh refinement simulatio...
We use the SPHINX suite of high-resolution cosmological radiation hydrodynamics simulations to study...
ABSTRACT We introduce the thesan project, a suite of large volume ($L_\mathrm{box} =...
The high-redshift intergalactic medium (IGM) and the primeval galaxy population are rapidly becoming...
A fundamental requirement for reionizing the Universe is that a sufficient fraction of the ionizing ...
The visibility of high-redshift Lyman-alpha emitting galaxies (LAEs) provides important constraints ...
ABSTRACT The visibility of high-redshift Lyman-alpha emitting galaxies (LAEs) provid...
Philosophiae Doctor - PhD (Physics)We improve on the physical treatment of ionising source and sink ...
ABSTRACT Using high-resolution cosmological radiation-hydrodynamic (RHD) simulations ...
Line intensity mapping (LIM) is rapidly emerging as a powerful technique to study galaxy formation a...
We introduce a new suite of radiation- hydrodynamical simulations of galaxy formation and reionizati...
International audienceWe use the photon flux and absorption tracer algorithm presented in Katz et al...
We use a fully self-consistent cosmological simulation including dark matter dynamics, multi-species...
We present a new hybrid code for large volume, high resolution simulations of cosmic reionization, w...
We examine the epoch of hydrogen reionization using a new numerical method that allows us to self-co...
International audienceWe present the SPHINX suite of cosmological adaptive mesh refinement simulatio...
We use the SPHINX suite of high-resolution cosmological radiation hydrodynamics simulations to study...