F
Francesco Miniati
Researcher at ETH Zurich
Publications - 104
Citations - 6092
Francesco Miniati is an academic researcher from ETH Zurich. The author has contributed to research in topics: Galaxy & Galaxy cluster. The author has an hindex of 44, co-authored 104 publications receiving 5744 citations. Previous affiliations of Francesco Miniati include Max Planck Society & University of Oxford.
Papers
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Journal ArticleDOI
Fundamental differences between SPH and grid methods
Oscar Agertz,Ben Moore,Joachim Stadel,Doug Potter,Francesco Miniati,Justin I. Read,Lucio Mayer,A. Gawryszczak,Andrey V. Kravtsov,Åke Nordlund,Frazer R. Pearce,Vicent Quilis,Douglas H. Rudd,Volker Springel,James M. Stone,Elizabeth J. Tasker,Romain Teyssier,James Wadsley,Rolf Walder +18 more
TL;DR: In this paper, a comparison of grid and smoothed particle hydrodynamics (SPH) was carried out by investigating their performance in modelling interacting multiphase fluids, and it was shown that SPH introduces spurious pressure forces on particles in regions where there are steep density gradients.
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Strong magnetic fields in normal galaxies at high redshift.
M. L. Bernet,Francesco Miniati,Simon J. Lilly,Philipp P. Kronberg,Miroslava Dessauges-Zavadsky +4 more
TL;DR: High-resolution spectra are reported that demonstrate that the quasars with strong Mg ii absorption lines are unambiguously associated with larger rotation measures.
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Probing Turbulence in the Coma Galaxy Cluster
TL;DR: In this paper, a Fourier analysis of the data reveals the presence of a scale-invariant pressure fluctuation spectrum in the range between 40 and 90 kpc and is well described by a projected Kolmogorov/Oboukhov-type turbulence spectrum.
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Fluorescent Lyα Emission from the High-Redshift Intergalactic Medium
TL;DR: In this paper, a high-resolution hydro simulation of the ΛCDM cosmology with two radiative transfer schemes (for continuum and line radiation) was combined to predict the properties, spectra, and spatial distribution of fluorescent Lyα emission at z ~ 3.
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Ultrahigh energy cosmic ray probes of large scale structure and magnetic fields
TL;DR: In this paper, the authors studied the influence of extragalactic magnetic fields on the structure of the universe in the multi-pole moments, auto-correlation function, and cluster statistics of ultra-high energy cosmic rays.