Relativistic magnetic reconnection in collisionless ion-electron plasmas explored with particle-in-cell simulations
arXiv:1404.7366 · doi:10.1051/0004-6361/201424083
Abstract
Magnetic reconnection is a leading mechanism for magnetic energy conversion and high-energy non-thermal particle production in a variety of high-energy astrophysical objects, including ones with relativistic ion-electron plasmas (e.g., microquasars or AGNs) - a regime where first principle studies are scarce. We present 2D particle-in-cell (PIC) simulations of low ion-electron plasmas under relativistic conditions, i.e., with inflow magnetic energy exceeding the plasma rest-mass energy. We identify outstanding properties: (i) For relativistic inflow magnetizations (here ), the reconnection outflows are dominated by thermal agitation instead of bulk kinetic energy. (ii) At large inflow electron magnetization (), the reconnection electric field is sustained more by bulk inertia than by thermal inertia. It challenges the thermal-inertia-paradigm and its implications. (iii) The inflows feature sharp transitions at the entrance of the diffusion zones. These are not shocks but results from particle ballistic motions, all bouncing at the same location, provided that the thermal velocity in the inflow is far smaller than the inflow E cross B bulk velocity. (iv) Island centers are magnetically isolated from the rest of the flow, and can present a density depletion at their center. (v) The reconnection rates are slightly larger than in non-relativistic studies. They are best normalized by the inflow relativistic Alfvén speed projected in the outflow direction, which then leads to rates in a close range (0.14-0.25) thus allowing for an easy estimation of the reconnection electric field.
Submitted to A&A
References in corpus (15)
- Instability of current sheets and formation of plasmoid chains
- Fast TeV variability in blazars: jets in a jet
- Two-scale structure of the electron dissipation region during collisionless magnetic reconnection
- New Measure of the Dissipation Region in Collisionless Magnetic Reconnection
- The Role of the Guide Field in Relativistic Pair Plasma Reconnection
- Reconnection in Marginally Collisionless Accretion Disk Coronae
- Did Swift measure GRB prompt emission radii?
- Relativistic magnetic reconnection in collisionless ion-electron plasmas explored with particle-in-cell simulations
- Two-dimensional MHD simulations of relativistic magnetic reconnection
- Energy Extraction from a Rotating Black Hole by Magnetic Reconnection in Ergosphere
- Observations of Magnetic Fields and Relativistic Beaming in Four Quasar Jets
- Growth rates of the Weibel and tearing mode instabilities in a relativistic pair plasma
- Self-regulation of the reconnecting current layer in relativistic pair plasma reconnection
- Particle-In-Cell Simulation of Electron Acceleration in Solar Coronal Jets
- Relativistic magnetic reconnection at X-type neutral points
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- Blazar Jets Perturbed by Magneto-Gravitational Stresses in Supermassive Binaries
- Relativistic Magnetic Reconnection in Astrophysical Plasmas: A Powerful Mechanism of Nonthermal Emission
- Comptonization by Reconnection Plasmoids in Black Hole Coronae II: Electron-Ion Plasma
- Dissipation in Relativistic Pair-plasma Reconnection: Revisited
- Electron and proton energization in 3D reconnecting current sheets in semirelativistic plasma with guide magnetic field
- Particle-in-Cell Simulations of Relativistic Magnetic Reconnection with Advanced Maxwell Solver Algorithms
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- Two-dimensional particle simulation of the boundary between a hot pair plasma and magnetized electrons and protons: out-of-plane magnetic field
- Comptonization by Reconnection Plasmoids in Black Hole Coronae III: Dependence on the Guide Field in Pair Plasma
- Particle injection in three-dimensional relativistic magnetic reconnection
- Plasmas in Gamma-Ray Bursts: particle acceleration, magnetic fields, radiative Processes and environments
- Three-dimensional structure and stability of discontinuities between unmagnetized pair plasma and magnetized electron-proton plasma
- Pair-Regulated Klein-Nishina Relativistic Magnetic Reconnection with Applications to Blazars and Accreting Black Holes
- Applying Relativistic Reconnection to Blazar Jets