English

Multiparticle collision simulations of dense stellar systems and plasmas

Astrophysics of Galaxies 2023-01-25 v3

Abstract

We summarize a series of numerical experiments of collisional dynamics in dense stellar systems such as globular clusters (GCs) and in weakly collisional plasmas using a novel simulation technique, the so-called Multi-particle collision (MPC) method, alternative to Fokker-Planck and Monte Carlo approaches. MPC is related to particle-mesh approaches for the computation of self consistent long-range fields, ensuring that simulation time scales with NlogNN\log N in the number of particles, as opposed to N2N^2 for direct NN-body. The collisional relaxation effects are modelled by computing particle interactions based on a collision operator approach that ensures rigorous conservation of energy and momenta and depends only on particles velocities and cell-based integrated quantities.

Keywords

Cite

@article{arxiv.2201.04586,
  title  = {Multiparticle collision simulations of dense stellar systems and plasmas},
  author = {P. Di Cintio and M. Pasquato and L. Barbieri and H. Bufferand and L. Casetti and G. Ciraolo and U. N. Di Carlo and P. Ghendrih and J. P. Gunn and S. Gupta and H. Kim and S. Lepri and R. Livi and A. Simon-Petit and A. A. Trani and S. -J. Yoon},
  journal= {arXiv preprint arXiv:2201.04586},
  year   = {2023}
}

Comments

7 pages, 2 figures. To appear in the proceedings of the 362 IAU symposium "Predictive Power of Computational Astrophysics as a Discovery Tool". Chamonix, France 8-12 Nov. 2021

R2 v1 2026-06-24T08:47:58.495Z