Magnetic reconnection, especially in the relativistic regime, provides an efficient mechanism for accelerating relativistic particles and thus offers an attractive physical explanation for nonthermal high-energy emission from various astrophysical sources. I present a simple analytical model that elucidates key physical processes responsible for reconnection-driven relativistic nonthermal particle acceleration (NTPA) in the large-system, plasmoid-dominated regime in two dimensions. The model aims to explain the numerically-observed dependencies of the power-law index $p$ and high-energy cutoff $\gamma_c$ of the resulting nonthermal particle energy spectrum $f(\gamma)$ on the ambient plasma magnetization $\sigma$, and (for $\gamma_c$) on the...
The interactions between a relativistic magnetized collisionless shock and dense clumps have been ex...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...
Magnetic reconnection can power spectacular high-energy astrophysical phenomena by producing non-the...
Magnetic reconnection is thought to be the driver for many explosive phenomena in the universe. The ...
Particles are accelerated to very high, non-thermal energies during explosive energy-release phenome...
We derive basic scaling equations for relativistic magnetic reconnection in the general case of asym...
Magnetic reconnection is ubiquitous in astrophysical systems, and in many such systems, the plasma s...
The past decade has seen an outstanding development of nonthermal particle acceleration in magnetic ...
Relativistic collisionless shocks are associated with efficient particle acceleration when propagati...
Magnetic reconnection drives explosive particle acceleration in a wide range of space and astrophysi...
The research in this thesis is centered around the study of black holes and stars. The objects of st...
Magnetic reconnection plays an important role in the release of magnetic energy and consequent energ...
Dissipative processes cause collisionless plasmas in many systems to develop nonthermal particle dis...
We investigate the differential emission rate of neutral scalar bosons from a highly magnetized rela...
The interactions between a relativistic magnetized collisionless shock and dense clumps have been ex...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...
Magnetic reconnection can power spectacular high-energy astrophysical phenomena by producing non-the...
Magnetic reconnection is thought to be the driver for many explosive phenomena in the universe. The ...
Particles are accelerated to very high, non-thermal energies during explosive energy-release phenome...
We derive basic scaling equations for relativistic magnetic reconnection in the general case of asym...
Magnetic reconnection is ubiquitous in astrophysical systems, and in many such systems, the plasma s...
The past decade has seen an outstanding development of nonthermal particle acceleration in magnetic ...
Relativistic collisionless shocks are associated with efficient particle acceleration when propagati...
Magnetic reconnection drives explosive particle acceleration in a wide range of space and astrophysi...
The research in this thesis is centered around the study of black holes and stars. The objects of st...
Magnetic reconnection plays an important role in the release of magnetic energy and consequent energ...
Dissipative processes cause collisionless plasmas in many systems to develop nonthermal particle dis...
We investigate the differential emission rate of neutral scalar bosons from a highly magnetized rela...
The interactions between a relativistic magnetized collisionless shock and dense clumps have been ex...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...
International audienceMagnetic reconnection in relativistic collisionless plasmas can accelerate par...