English
Related papers

Related papers: The Cosmic Web of Baryons

200 papers

The Milky Way appears to be missing baryons, as the observed mass in stars and gas is well below the cosmic mean. One possibility is that a substantial fraction of the Galaxy's baryons are embedded within an extended, million-degree hot…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-12 Taotao Fang , James S. Bullock , Michael Boylan-Kolchin

The Universe has evolved from an initial diffuse, uniform gas to a complex structure that includes both voids and high-density galaxy clusters connected by gaseous filaments, known as the Cosmic Web, and traced by 3D surveys of galaxies.…

Cosmology and Nongalactic Astrophysics · Physics 2023-07-28 Giulia Cerini , Nico Cappelluti , Massimiliano Galeazzi , Eugenio Ursino

The number of detected baryons in the Universe at z<0.5 is much smaller than predicted by standard big bang nucleosynthesis and by the detailed observation of the Lyman alpha forest at red-shift z=2. Hydrodynamical simulations indicate that…

Astrophysics · Physics 2008-11-26 E. Ursino , M. Galeazzi

Most of the baryonic matter of the Universe resides in a highly-ionized gaseous intergalactic medium. This gas flows along dark-matter filaments toward galaxy superclusters, clusters, and groups until it pools around the galaxies into a…

Galaxies are missing most of their baryons, and many models predict these baryons lie in a hot halo around galaxies. We establish observationally motivated constraints on the mass and radii of these haloes using a variety of independent…

Cosmology and Nongalactic Astrophysics · Physics 2010-04-13 Michael E. Anderson , Joel N. Bregman

The intergalactic medium (IGM) accounts for ~90% of baryons at all epochs and yet its three dimensional distribution in the cosmic web remains mostly unknown. This is so because the only feasible way to observe the bulk of the IGM is…

Cosmology and Nongalactic Astrophysics · Physics 2017-03-22 Nicolas Tejos

Context. A significant fraction of the predicted baryons remains undetected in the local universe. We adopted the common assumption that a large fraction of the missing baryons corresponds to the hot (log T(K) = 5.5-7) phase of the Warm Hot…

Recent Cosmological measurements indicate that baryons comprise about four percent of the total mass-energy density of the Universe, which is in accord with the predictions arising from studies of the production of the lightest elements. It…

Astrophysics · Physics 2007-05-23 F. Nicastro , S. Mathur , M. Elvis , J. Drake , T. Fang , A. Fruscione , Y. Krongold , H. Marshall , R. Williams , A. Zezas

In the Big Bang about 5% of the mass that was created was in the form of normal baryonic matter (neutrons and protons). Of this about 10% ended up in galaxies in the form of stars or of gas (that can be in molecules, can be atomic, or can…

Astrophysics · Physics 2009-11-10 J. I. Read , Neil Trentham

About half of the baryons in the local Universe are invisible and - according to simulations - their dominant fraction resides in filaments connecting clusters of galaxies in the form of low density gas with temperatures in the range of…

Astrophysics · Physics 2009-11-13 N. Werner , A. Finoguenov , J. S. Kaastra , A. Simionescu , J. P. Dietrich , J. Vink , H. Boehringer

The majority of the ordinary matter in the local Universe has been heated by strong structure formation shocks and resides in a largely unexplored hot, diffuse, X-ray emitting plasma that permeates the halos of galaxies, galaxy groups and…

The Hot Universe Baryon Surveyor (HUBS) mission is proposed to study "missing" baryons in the universe. Unlike dark matter, baryonic matter is made of elements in the periodic table, and can be directly observed through the electromagnetic…

Instrumentation and Methods for Astrophysics · Physics 2021-01-15 Wei Cui

Approximately 30-40% of all baryons in the present day universe reside in a warm-hot intergalactic medium (WHIM), with temperatures between 10^5<T<10^7 K. This is a generic prediction from six hydrodynamic simulations of currently favored…

The amount of detected baryons in the local Universe is at least a factor of two smaller than measured at high redshift. It is believed that a significant fraction of the baryons in the current Universe is "hiding" in a hot filamentary…

Astrophysics · Physics 2014-11-18 M. Galeazzi , A. Gupta , E. Ursino

The current census of observed baryons in the local Universe is still missing a significant fraction of them according to standard Big-Bang nucleosynthesis. Numerical simulations predict that most of the missing baryons are in a hot…

Astrophysics · Physics 2009-10-30 Rosalba Perna , Abraham Loeb

In this paper we review the current predictions of numerical simulations for the origin and observability of the warm hot intergalactic medium (WHIM), the diffuse gas that contains up to 50 per cent of the baryons at z~0. During structure…

Astrophysics · Physics 2009-11-13 S. Bertone , J. Schaye , K. Dolag

Using the results of a high-resolution, cosmological hydrodynamical re-simulation of a supercluster-like region we investigate the physical properties of the gas located along the filaments and bridges which constitute the so-called cosmic…

Astrophysics · Physics 2009-11-11 K. Dolag , M. Meneghetti , L. Moscardini , E. Rasia , A. Bonaldi

Several popular cosmological models predict that most of the baryonic mass in the local universe is located in filamentary and sheet-like structures associated with galaxy overdensities. This gas is expected to be gravitationally heated to…

Astrophysics · Physics 2009-11-07 L. Zappacosta , F. Mannucci , R. Maiolino , R. Gilli , A. Ferrara , A. Finoguenov , N. M. Nagar , D. J. Axon

The amount of baryons hosted in the disks of galaxies is lower than expected based on the mass of their dark-matter halos and the fraction of baryon-to-total matter in the universe, giving rise to the so called galaxy missing-baryon…

A large fraction of the baryons today are predicted to be in hot, filamentary gas, which has yet to be detected. In this paper, we use numerical simulations of dark matter and gas to determine if these filaments and groups of galaxy will be…

Astrophysics · Physics 2007-05-23 M. Pierre , G. Bryan , R. Gastaud