The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy formation performed with the AREPO code and updated models for feedback physics. Here, we introduce the first two simulations of the series, TNG100 and TNG300, and quantify the stellar mass content of about 4000 massive galaxy groups and clusters (1013 ≤ M200c/M☉ ≤ 1015) at recent times (z ≤ 1). The richest clusters have half of their total stellar mass bound to satellite galaxies, with the other half being associated with the central galaxy and the diffuse intracluster light. Haloes more massive than about 5 × 1014 M☉ have more diffuse stellar mass outside 100 kpc than within 100 kpc, with power-law slopes of the radial mass density distribu...
Aims. We study the stellar mass content of massive haloes in the redshift range 0.86 < z < 1.34, by ...
We investigate the internal structure and density profiles of halos of mass 1010 − 1014 M in the Evo...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
© 2017 The Author(s). The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical ...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
The number of massive structures in the universe is determined by a small set of cosmological parame...
The number of massive structures in the universe is determined by a small set of cosmological parame...
We use the IllustrisTNG (TNG) simulations to explore the galaxy-halo connection as inferred from sta...
Galaxy clusters are massive dark matter halos, with masses as high as a few times 10^15 M⊙, each hos...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
Aims. We study the stellar mass content of massive haloes in the redshift range 0.86 < z < 1.34, by ...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
Aims. We study the stellar mass content of massive haloes in the redshift range 0.86 < z < 1.34, by ...
We investigate the internal structure and density profiles of halos of mass 1010 − 1014 M in the Evo...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
© 2017 The Author(s). The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical ...
The IllustrisTNG project is a new suite of cosmological magnetohydrodynamical simulations of galaxy ...
The number of massive structures in the universe is determined by a small set of cosmological parame...
The number of massive structures in the universe is determined by a small set of cosmological parame...
We use the IllustrisTNG (TNG) simulations to explore the galaxy-halo connection as inferred from sta...
Galaxy clusters are massive dark matter halos, with masses as high as a few times 10^15 M⊙, each hos...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
Aims. We study the stellar mass content of massive haloes in the redshift range 0.86 < z < 1.34, by ...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...
Aims. We study the stellar mass content of massive haloes in the redshift range 0.86 < z < 1.34, by ...
We investigate the internal structure and density profiles of halos of mass 1010 − 1014 M in the Evo...
We use the IllustrisTNG (TNG) cosmological simulations to provide theoretical expectations for the d...