As building blocks of dust, rocky planets, and even complex life, the chemical elements heavier than hydrogen (H) and helium (He) - called "metals" in astronomy - play an essential role in our Universe and its evolution. Up to Fe and Ni, these metals are known to be created by stars and stellar remnants via nuclear fusion and to be ejected into their immediate surroundings to enrich new stellar generations. A spectacular finding, however, is that these processed elements are found even outside stellar systems, in particular in the hot, X-ray atmospheres surrounding early-type galaxies and pervading galaxy clusters and groups. These large-scales structures are thus a remarkable fossil record of the integrated history of the enrichment of our...
Emerging from the Big Bang, the Universe contained hydrogen, helium, and lithium. Heavier elements w...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
We develop a model for the metal enrichment of the intracluster medium (ICM) that combines a cosmolo...
Whereas the extreme conditions of the first minutes after the Big Bang have prod...
Whereas the extreme conditions of the first minutes after the Big Bang have prod...
The X-ray emitting intragroup medium (IGrM) reveals emission lines typical of many elements synthes...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
The uniformity of the intracluster medium (ICM) enrichment level in the outskirts of nearby galaxy c...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
Abstract. Clusters of galaxies as the largest clearly defined objects in our Universe are ideal labo...
We develop a model for the metal enrichment of the intracluster medium (ICM) that combines a cosmolo...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
The uniformity of the intra-cluster medium (ICM) enrichment level in the outskirts of nearby galaxy ...
Emerging from the Big Bang, the Universe contained hydrogen, helium, and lithium. Heavier elements w...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
We develop a model for the metal enrichment of the intracluster medium (ICM) that combines a cosmolo...
Whereas the extreme conditions of the first minutes after the Big Bang have prod...
Whereas the extreme conditions of the first minutes after the Big Bang have prod...
The X-ray emitting intragroup medium (IGrM) reveals emission lines typical of many elements synthes...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
The uniformity of the intracluster medium (ICM) enrichment level in the outskirts of nearby galaxy c...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
The baryonic composition of galaxy clusters and groups is dominated by a hot, X-ray emitting Intra-C...
Abstract. Clusters of galaxies as the largest clearly defined objects in our Universe are ideal labo...
We develop a model for the metal enrichment of the intracluster medium (ICM) that combines a cosmolo...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
The uniformity of the intra-cluster medium (ICM) enrichment level in the outskirts of nearby galaxy ...
Emerging from the Big Bang, the Universe contained hydrogen, helium, and lithium. Heavier elements w...
Chemical enrichment of the Universe at all scales is related to stellar winds and explosive supernov...
We develop a model for the metal enrichment of the intracluster medium (ICM) that combines a cosmolo...