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  • E pur si muove: Galilean-in... E pur si muove: Galilean-invariant cosmological hydrodynamical simulations on a moving mesh
    Springel, Volker Monthly Notices of the Royal Astronomical Society, 01/2010, Volume: 401, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Hydrodynamic cosmological simulations at present usually employ either the Lagrangian smoothed particle hydrodynamics (SPH) technique or Eulerian hydrodynamics on a Cartesian mesh with (optional) ...
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  • Structure formation in larg... Structure formation in large-volume cosmological simulations of fuzzy dark matter: impact of the non-linear dynamics
    May, Simon; Springel, Volker Monthly Notices of the Royal Astronomical Society, 09/2021, Volume: 506, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    ABSTRACT An ultralight bosonic particle of mass around $10^{-22}\, \mathrm{eV}/c^2$ is of special interest as a dark matter candidate, as it both has particle physics motivations, and may give rise ...
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  • Spin evolution and feedback... Spin evolution and feedback of supermassive black holes in cosmological simulations
    Bustamante, Sebastian; Springel, Volker Monthly Notices of the Royal Astronomical Society, 12/2019, Volume: 490, Issue: 3
    Journal Article
    Peer reviewed
    Open access

    ABSTRACT It is well established that the properties of supermassive black holes (BHs) and their host galaxies are correlated through scaling relations. While hydrodynamical cosmological simulations ...
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  • An iterative method for the... An iterative method for the construction of N-body galaxy models in collisionless equilibrium
    Yurin, Denis; Springel, Volker Monthly Notices of the Royal Astronomical Society, 10/2014, Volume: 444, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    We describe a new iterative approach for the realization of equilibrium N-body systems for given density distributions. Our method uses elements of Schwarzschild's technique and of the ...
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  • Modified-Gravity-gadget: a ... Modified-Gravity-gadget: a new code for cosmological hydrodynamical simulations of modified gravity models
    Puchwein, Ewald; Baldi, Marco; Springel, Volker Monthly Notices of the Royal Astronomical Society, 11/2013, Volume: 436, Issue: 1
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    Peer reviewed
    Open access

    We present a new massively parallel code for N-body and cosmological hydrodynamical simulations of modified gravity models. The code employs a multigrid-accelerated Newton-Gauss-Seidel relaxation ...
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  • Magnetogenesis around the f... Magnetogenesis around the first galaxies: the impact of different field seeding processes on galaxy formation
    Garaldi, Enrico; Pakmor, Rüdiger; Springel, Volker Monthly notices of the Royal Astronomical Society, 04/2021, Volume: 502, Issue: 4
    Journal Article
    Peer reviewed

    ABSTRACT We study the evolution of magnetic fields generated by charge segregation ahead of ionization fronts during the Epoch of Reionization, and their effects on galaxy formation. We compare this ...
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  • Simulating the interstellar... Simulating the interstellar medium and stellar feedback on a moving mesh: implementation and isolated galaxies
    Marinacci, Federico; Sales, Laura V; Vogelsberger, Mark ... Monthly Notices of the Royal Astronomical Society, 11/2019, Volume: 489, Issue: 3
    Journal Article
    Peer reviewed
    Open access

    ABSTRACT We introduce the Stars and MUltiphase Gas in GaLaxiEs – SMUGGLE model, an explicit and comprehensive stellar feedback model for the moving-mesh code arepo. This novel sub-resolution model ...
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  • First results from the Illu... First results from the IllustrisTNG simulations: the stellar mass content of groups and clusters of galaxies
    Pillepich, Annalisa; Nelson, Dylan; Hernquist, Lars ... Monthly Notices of the Royal Astronomical Society, 03/2018, Volume: 475, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Abstract 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 ...
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