Particle acceleration with magnetic reconnection in large-scale RMHD simulations - I. Current sheet identification and characterization

被引:4
|
作者
Nurisso, Matteo [1 ,2 ]
Celotti, Annalisa [1 ,2 ,3 ,4 ]
Mignone, Andrea [5 ]
Bodo, Gianluigi [6 ]
机构
[1] SISSA, Via Bonomea 265, I-34136 Trieste, Italy
[2] INAF Ist Nazl Astrofis, Osservatorio Astron Brera, Via Bianchi 46, I-23807 Merate, Italy
[3] INFN Ist Nazl Fis Nucl, Sez Trieste, Via Valerio 2, I-34127 Trieste, Italy
[4] IFPU Inst Fundamental Phys Universe, Via Beirut 2, I-34151 Trieste, Italy
[5] Univ Torino, Dipartimento Fis Gen, Via Pietro Giuria 1, I-10125 Turin, Italy
[6] INAF Ist Nazl Astrofis, Osservatorio Astrofis Torino, Str Osservatorio 20, I-10025 Pino Torinese, Italy
关键词
magnetic reconnection; MHD; radiation mechanisms: non-thermal; RELATIVISTIC JETS; KINK INSTABILITY; MAGNETOHYDRODYNAMIC SIMULATIONS; NONTHERMAL PARTICLES; KINETIC SIMULATIONS; ENERGY-DISSIPATION; BLACK-HOLE; ELECTRON; GENERATION; TURBULENCE;
D O I
10.1093/mnras/stad1348
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present a new algorithm for the identification and physical characterization of current sheets and reconnection sites in 2D and 3D large-scale relativistic magnetohydrodynamic numerical simulations. This has been implemented in the pluto code and tested in the cases of a single current sheet, a 2D jet, and a 3D unstable plasma column. Its main features are (i) a computational cost that allows its use in large-scale simulations and (ii) the capability to deal with complex 2D and 3D structures of the reconnection sites. In the performed simulations, we identify the computational cells that are part of a current sheet by a measure of the gradient of the magnetic field along different directions. Lagrangian particles, which follow the fluid, are used to sample plasma parameters before entering the reconnection sites that form during the evolution of the different configurations considered. Specifically, we track the distributions of the magnetization parameter sigma and the thermal to magnetic pressure ratio beta that - according to particle-in-cell simulation results - control the properties of particle acceleration in magnetic reconnection regions. Despite the fact that initial conditions of the simulations were not chosen 'ad hoc', the 3D simulation returns results suitable for efficient particle acceleration and realistic non-thermal particle distributions.
引用
收藏
页码:5517 / 5528
页数:12
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