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Title: Nonthermal Particle Acceleration in 3D Relativistic Magnetic Reconnection in Pair Plasma

Journal Article · · The Astrophysical Journal. Letters (Online)
ORCiD logo [1];  [2]
  1. Univ. of Colorado, Boulder, CO (United States).Center for Integrated Plasma Studies, Physics Dept.
  2. Univ. of Colorado, Boulder, CO (United States).Center for Integrated Plasma Studies, Physics Dept.; Inst. for Advanced Study, Princeton, NJ (United States)

As a fundamental process converting magnetic to plasma energy in high-energy astrophysical plasmas, relativistic magnetic reconnection is a leading explanation for the acceleration of particles to the ultrarelativistic energies that are necessary to power nonthermal emission (especially X-rays and gamma-rays) in pulsar magnetospheres and pulsar wind nebulae, coronae and jets of accreting black holes, and gamma-ray bursts. An important objective of plasma astrophysics is therefore the characterization of nonthermal particle acceleration (NTPA) effected by reconnection. Reconnection-powered NTPA has been demonstrated over a wide range of physical conditions using large 2D kinetic simulations. However, its robustness in realistic 3D reconnection—in particular, whether the 3D relativistic drift-kink instability (RDKI) disrupts NTPA—has not been systematically investigated, although pioneering 3D simulations have observed NTPA in isolated cases. Here, we present the first comprehensive study of NTPA in 3D relativistic reconnection in collisionless electron–positron plasmas, characterizing NTPA as the strength of 3D effects is varied systematically via the length in the third dimension and the strength of the guide magnetic field. We find that, while the RDKI prominently perturbs 3D reconnecting current sheets, it does not suppress particle acceleration, even for zero guide field; fully 3D reconnection robustly and efficiently produces nonthermal power-law particle spectra closely resembling those obtained in 2D. This finding provides strong support for reconnection as the key mechanism powering high-energy flares in various astrophysical systems. Here, we also show that strong guide fields significantly inhibit NTPA, slowing reconnection and limiting the energy available for plasma energization, yielding steeper and shorter power-law spectra.

Research Organization:
Univ. of Colorado, Boulder, CO (United States); Univ. of New Hampshire, Durham, NH (United States); Argonne National Lab. (ANL), Argonne, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC); National Science Foundation (NSF); National Aeronautics and Space Administration (NASA)
Grant/Contract Number:
SC0008409; SC0008655; AC02-06CH11357; ACI-1548562
OSTI ID:
1537199
Journal Information:
The Astrophysical Journal. Letters (Online), Vol. 843, Issue 2; ISSN 2041-8213
Publisher:
Institute of Physics (IOP)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 58 works
Citation information provided by
Web of Science

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The steady growth of the high-energy spectral cut-off in relativistic magnetic reconnection journal October 2018
Physics of the saturation of particle acceleration in relativistic magnetic reconnection journal February 2018
Inferring the jet parameters of active galactic nuclei using Bayesian analysis of VLBI data with a non-uniform jet model journal July 2019
Interpreting Crab Nebula’s synchrotron spectrum: two acceleration mechanisms journal August 2019
Particle acceleration in relativistic magnetic reconnection with strong inverse-Compton cooling in pair plasmas journal August 2018
X-Ray and Optical Studies of the Redback System PSR J2129–0429 journal July 2018
Bright Gamma-Ray Flares Powered by Magnetic Reconnection in QED-strength Magnetic Fields journal January 2019
Electron and Proton Heating in Transrelativistic Guide Field Reconnection journal February 2019
Measuring the Variability in K2 Optical Light Curves of the Binary Black Hole Candidate OJ 287 and Other Fermi Active Galactic Nuclei in 2014–2015 journal June 2019
Very-high-energy Emission from Magnetic Reconnection in the Radiative-inefficient Accretion Flow of SgrA* journal June 2019
Relativistic Magnetic Reconnection in Electron–Positron–Proton Plasmas: Implications for Jets of Active Galactic Nuclei journal July 2019
Relativistic Tearing Mode in Pair Plasmas and Application to Magnetic Giant Flares journal July 2019
“Double-tracking” Characteristics of the Spectral Evolution of GRB 131231A: Synchrotron Origin? journal October 2019
The Interplay of Magnetically Dominated Turbulence and Magnetic Reconnection in Producing Nonthermal Particles journal November 2019
Generalized, Energy-conserving Numerical Simulations of Particles in General Relativity. II. Test Particles in Electromagnetic Fields and GRMHD journal February 2019
Pulsar Radio Emission Mechanism: Radio Nanoshots as a Low-frequency Afterglow of Relativistic Magnetic Reconnection journal April 2019
Physics of the saturation of particle acceleration in relativistic magnetic reconnection text January 2017
Particle acceleration in relativistic magnetic reconnection with strong inverse-Compton cooling in pair plasmas text January 2018
Bright gamma-ray flares powered by magnetic reconnection in QED-strength magnetic fields text January 2018
Generalized, energy-conserving numerical simulations of particles in general relativity. II. Test particles in electromagnetic fields and GRMHD text January 2018
Interpreting Crab Nebula synchrotron spectrum: two acceleration mechanisms text January 2018
Electron and Proton Heating in Transrelativistic Guide Field Reconnection text January 2019
Relativistic Magnetic Reconnection in Electron-Positron-Proton Plasmas: Implications for Jets of Active Galactic Nuclei text January 2019