0000000000560338

AUTHOR

David Vallés-pérez

0000-0003-2656-5985

showing 3 related works from this author

On the accretion history of galaxy clusters: temporal and spatial distribution

2020

We analyse the results of an Eulerian AMR cosmological simulation in order to quantify the mass growth of galaxy clusters, exploring the differences between dark matter and baryons. We have determined the mass assembly histories (MAHs) of each of the mass components and computed several proxies for the instantaneous mass accretion rate (MAR). The mass growth of both components is clearly dominated by the contribution of major mergers, but high MARs can also occur during smooth accretion periods. We explored the correlations between MARs, merger events and clusters' environments, finding the mean densities in $1 \leq r/R_{200m} \leq 1.5$ to correlate strongly with $\Gamma_{200m}$ in massive …

PhysicsCOSMIC cancer databaseIsotropyDark matterFOS: Physical sciencesAstronomy and AstrophysicsAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysicsMars Exploration ProgramSpatial distributionAstrophysics - Astrophysics of GalaxiesBaryonSpace and Planetary ScienceAstrophysics of Galaxies (astro-ph.GA)Cluster (physics)Astrophysics::Galaxy AstrophysicsGalaxy clusterMonthly Notices of the Royal Astronomical Society
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Troubled cosmic flows: turbulence, enstrophy and helicity from the assembly history of the intracluster medium

2021

Both simulations and observations have shown that turbulence is a pervasive phenomenon in cosmic scenarios, yet it is particularly difficult to model numerically due to its intrinsically multiscale character which demands high resolutions. Additionally, turbulence is tightly connected to the dynamical state and the formation history of galaxies and galaxy clusters, producing a diverse phenomenlogy which requires large samples of such structures to attain robust conclusions. In this work, we use an adaptive mesh refinement (AMR) cosmological simulation to explore the generation and dissipation of turbulence in galaxy clusters, in connection to its assembly history. We find that major mergers…

PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)Accretion (meteorology)TurbulenceFOS: Physical sciencesAstronomy and AstrophysicsAstrophysicsAstrophysics::Cosmology and Extragalactic AstrophysicsVorticityEnstrophyAstrophysics - Astrophysics of GalaxiesGalaxySpace and Planetary ScienceAstrophysics of Galaxies (astro-ph.GA)Vortex stretchingIntracluster mediumGalaxy clusterAstrophysics::Galaxy AstrophysicsAstrophysics - Cosmology and Nongalactic Astrophysics
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Unravelling cosmic velocity flows: a Helmholtz-Hodge decomposition algorithm for cosmological simulations

2021

In the context of intra-cluster medium turbulence, it is essential to be able to split the turbulent velocity field in a compressive and a solenoidal component. We describe and implement a new method for this aim, i.e., performing a Helmholtz-Hodge decomposition, in multi-grid, multi-resolution descriptions, focusing on (but not being restricted to) the outputs of AMR cosmological simulations. The method is based on solving elliptic equations for a scalar and a vector potential, from which the compressive and the solenoidal velocity fields, respectively, are derived through differentiation. These equations are addressed using a combination of Fourier (for the base grid) and iterative (for t…

PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)Solenoidal vector fieldField (physics)Adaptive mesh refinementMathematical analysisScalar (physics)General Physics and AstronomyFOS: Physical sciencesContext (language use)Astrophysics - Astrophysics of Galaxies01 natural sciences010305 fluids & plasmassymbols.namesakeHardware and ArchitectureHelmholtz free energyAstrophysics of Galaxies (astro-ph.GA)0103 physical sciencessymbolsVector fieldAstrophysics - Instrumentation and Methods for Astrophysics010306 general physicsInstrumentation and Methods for Astrophysics (astro-ph.IM)Astrophysics - Cosmology and Nongalactic AstrophysicsVector potential
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