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Article Dans Une Revue Astronomy and Astrophysics - A&A Année : 2020

Perfectly parallel cosmological simulations using spatial comoving Lagrangian acceleration

F. Leclercq
G. Lavaux
A.H. Jaffe
  • Fonction : Auteur
A.F. Heavens
  • Fonction : Auteur
W.J. Percival
  • Fonction : Auteur
Camille Noûs

Résumé

Context. Existing cosmological simulation methods lack a high degree of parallelism due to the long-range nature of the gravitational force, which limits the size of simulations that can be run at high resolution.Aims. To solve this problem, we propose a new, perfectly parallel approach to simulate cosmic structure formation, which is based on the spatial COmoving Lagrangian Acceleration (sCOLA) framework.Methods. Building upon a hybrid analytical and numerical description of particles’ trajectories, our algorithm allows for an efficient tiling of a cosmological volume, where the dynamics within each tile is computed independently. As a consequence, the degree of parallelism is equal to the number of tiles. We optimised the accuracy of sCOLA through the use of a buffer region around tiles and of appropriate Dirichlet boundary conditions around sCOLA boxes.Results. As a result, we show that cosmological simulations at the degree of accuracy required for the analysis of the next generation of surveys can be run in drastically reduced wall-clock times and with very low memory requirements.Conclusions. The perfect scalability of our algorithm unlocks profoundly new possibilities for computing larger cosmological simulations at high resolution, taking advantage of a variety of hardware architectures.
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Dates et versions

hal-02536126 , version 1 (05-05-2024)

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F. Leclercq, B. Faure, G. Lavaux, B. D. Wandelt, A.H. Jaffe, et al.. Perfectly parallel cosmological simulations using spatial comoving Lagrangian acceleration. Astronomy and Astrophysics - A&A, 2020, 639, pp.A91. ⟨10.1051/0004-6361/202037995⟩. ⟨hal-02536126v1⟩
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